460 results on '"Zhang, Guoyin"'
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2. Adversarial Training Based on Latent Distribution Calibration
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Da, Qingan, primary, Zhang, Guoyin, additional, Wang, Wenshan, additional, and Tian, Ye, additional
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- 2024
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3. Filamentary Network and Magnetic Field Structures Revealed with BISTRO in the High-Mass Star-Forming Region NGC2264 : Global Properties and Local Magnetogravitational Configurations
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Wang, Jia-Wei, Koch, Patrick M., Clarke, Seamus D., Fuller, Gary, Peretto, Nicolas, Tang, Ya-Wen, Yen, Hsi-Wei, Lai, Shih-Ping, Ohashi, Nagayoshi, Arzoumanian, Doris, Johnstone, Doug, Furuya, Ray, Inutsuka, Shu-ichiro, Lee, Chang Won, Ward-Thompson, Derek, Gouellec, Valentin J. M. Le, Liu, Hong-Li, Fanciullo, Lapo, Hwang, Jihye, Pattle, Kate, Poidevin, Frédérick, Tahani, Mehrnoosh, Onaka, Takashi, Rawlings, Mark G., Chung, Eun Jung, Liu, Junhao, Lyo, A-Ran, Priestley, Felix, Hoang, Thiem, Tamura, Motohide, Berry, David, Bastien, Pierre, Ching, Tao-Chung, Coudé, Simon, Kwon, Woojin, Chen, Mike, Eswaraiah, Chakali, Soam, Archana, Hasegawa, Tetsuo, Qiu, Keping, Bourke, Tyler L., Byun, Do-Young, Chen, Zhiwei, Chen, Huei-Ru Vivien, Chen, Wen Ping, Cho, Jungyeon, Choi, Minho, Choi, Yunhee, Choi, Youngwoo, Chrysostomou, Antonio, Dai, Sophia, Di Francesco, James, Diep, Pham Ngoc, Doi, Yasuo, Duan, Yan, Duan, Hao-Yuan, Eden, David, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hayashi, Saeko, Houde, Martin, Inoue, Tsuyoshi, Iwasaki, Kazunari, Jeong, Il-Gyo, Könyves, Vera, Kang, Ji-hyun, Kang, Miju, Karoly, Janik, Kataoka, Akimasa, Kawabata, Koji, Khan, Zacariyya, Kim, Mi-Ryang, Kim, Kee-Tae, Kim, Kyoung Hee, Kim, Shinyoung, Kim, Jongsoo, Kim, Hyosung, Kim, Gwanjeong, Kirchschlager, Florian, Kirk, Jason, Kobayashi, Masato I. N., Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Sang-Sung, Lee, Hyeseung, Lee, Jeong-Eun, Lee, Chin-Fei, Li, Dalei, Li, Hua-bai, Li, Guangxing, Li, Di, Lin, Sheng-Jun, Liu, Tie, Liu, Sheng-Yuan, Lu, Xing, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ngoc, Nguyen Bich, Park, Geumsook, Parsons, Harriet, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Jonathan, Retter, Brendan, Richer, John, Rigby, Andrew, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Seta, Masumichi, Sharma, Ekta, Shimajiri, Yoshito, Shinnaga, Hiroko, Tang, Xindi, Thuong, Hoang Duc, Tomisaka, Kohji, Tram, Le Ngoc, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Whitworth, Anthony, Wu, Jintai, Xie, Jinjin, Yang, Meng-Zhe, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Chuan-Peng, Zhang, Yapeng, Zhang, Guoyin, Zhou, Jianjun, Zhu, Lei, de Looze, Ilse, André, Philippe, Dowell, C. Darren, Eyres, Stewart, Falle, Sam, Robitaille, Jean-François, and van Loo, Sven
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Astrophysics - Solar and Stellar Astrophysics ,Astrophysics - Astrophysics of Galaxies - Abstract
We report 850 $\mu$m continuum polarization observations toward the filamentary high-mass star-forming region NGC 2264, taken as part of the B-fields In STar forming Regions Observations (BISTRO) large program on the James Clerk Maxwell Telescope (JCMT). These data reveal a well-structured non-uniform magnetic field in the NGC 2264C and 2264D regions with a prevailing orientation around 30 deg from north to east. Field strengths estimates and a virial analysis for the major clumps indicate that NGC 2264C is globally dominated by gravity while in 2264D magnetic, gravitational, and kinetic energies are roughly balanced. We present an analysis scheme that utilizes the locally resolved magnetic field structures, together with the locally measured gravitational vector field and the extracted filamentary network. From this, we infer statistical trends showing that this network consists of two main groups of filaments oriented approximately perpendicular to one another. Additionally, gravity shows one dominating converging direction that is roughly perpendicular to one of the filament orientations, which is suggestive of mass accretion along this direction. Beyond these statistical trends, we identify two types of filaments. The type-I filament is perpendicular to the magnetic field with local gravity transitioning from parallel to perpendicular to the magnetic field from the outside to the filament ridge. The type-II filament is parallel to the magnetic field and local gravity. We interpret these two types of filaments as originating from the competition between radial collapsing, driven by filament self-gravity, and the longitudinal collapsing, driven by the region's global gravity., Comment: Accepted for publication in the Astrophysical Journal. 43 pages, 32 figures, and 4 tables (including Appendix)
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- 2024
4. Split-bucket partition (SBP): a novel execution model for top-K and selection algorithms on GPUs
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Yang, Yiqing, Zhang, Guoyin, Wu, Yanxia, Zhao, Zhixiang, and Fu, Yan
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- 2024
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5. Block-wise dynamic mixed-precision for sparse matrix-vector multiplication on GPUs
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Zhao, Zhixiang, Zhang, Guoyin, Wu, Yanxia, Hong, Ruize, Yang, Yiqing, and Fu, Yan
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- 2024
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6. The JCMT BISTRO Survey: Studying the Complex Magnetic Field of L43
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Karoly, Janik, Ward-Thompson, Derek, Pattle, Kate, Berry, David, Whitworth, Anthony, Kirk, Jason, Bastien, Pierre, Ching, Tao-Chung, Coude, Simon, Hwang, Jihye, Kwon, Woojin, Soam, Archana, Wang, Jia-Wei, Hasegawa, Tetsuo, Lai, Shih-Ping, Qiu, Keping, Arzoumanian, Doris, Bourke, Tyler L., Byun, Do-Young, Chen, Huei-Ru Vivien, Chen, Wen Ping, Chen, Mike, Chen, Zhiwei, Cho, Jungyeon, Choi, Minho, Choi, Youngwoo, Choi, Yunhee, Chrysostomou, Antonio, Chung, Eun Jung, Dai, Sophia, Debattista, Victor, Di Francesco, James, Diep, Pham Ngoc, Doi, Yasuo, Duan, Hao-Yuan, Duan, Yan, Eswaraiah, Chakali, Fanciullo, Lapo, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Furuya, Ray, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hoang, Thiem, Houde, Martin, Hull, Charles L. H., Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Johnstone, Doug, Konyves, Vera, Kang, Ji-hyun, Kang, Miju, Kataoka, Akimasa, Kawabata, Koji, Kemper, Francisca, Kim, Jongsoo, Kim, Shinyoung, Kim, Gwanjeong, Kim, Kyoung Hee, Kim, Mi-Ryang, Kim, Kee-Tae, Kim, Hyosung, Kirchschlager, Florian, Kobayashi, Masato I. N., Koch, Patrick M., Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Chang Won, Lee, Hyeseung, Lee, Yong-Hee, Lee, Chin-Fei, Lee, Jeong-Eun, Lee, Sang-Sung, Li, Dalei, Li, Di, Li, Guangxing, Li, Hua-bai, Lin, Sheng-Jun, Liu, Hong-Li, Liu, Tie, Liu, Sheng-Yuan, Liu, Junhao, Longmore, Steven, Lu, Xing, Lyo, A-Ran, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ngoc, Nguyen Bich, Ohashi, Nagayoshi, Onaka, Takashi, Park, Geumsook, Parsons, Harriet, Peretto, Nicolas, Priestley, Felix, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Jonathan, Rawlings, Mark, Retter, Brendan, Richer, John, Rigby, Andrew, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Seta, Masumichi, Sharma, Ekta, Shimajiri, Yoshito, Shinnaga, Hiroko, Tahani, Mehrnoosh, Tamura, Motohide, Tang, Ya-Wen, Tang, Xindi, Tomisaka, Kohji, Tram, Le Ngoc, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Wu, Jintai, Xie, Jinjin, Yang, Meng-Zhe, Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Guoyin, Zhang, Yapeng, Zhang, Chuan-Peng, Zhou, Jianjun, Zhu, Lei, de Looze, Ilse, Andre, Philippe, Dowell, C. Darren, Eden, David, Eyres, Stewart, Falle, Sam, Gouellec, Valentin J. M. Le, Poidevin, Frederick, Robitaille, Jean-Francois, and van Loo, Sven
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Astrophysics - Astrophysics of Galaxies - Abstract
We present observations of polarized dust emission at 850 $\mu$m from the L43 molecular cloud which sits in the Ophiuchus cloud complex. The data were taken using SCUBA-2/POL-2 on the James Clerk Maxwell Telescope as a part of the BISTRO large program. L43 is a dense ($N_{\rm H_2}\sim 10^{22}$-10$^{23}$ cm$^{-2}$) complex molecular cloud with a submillimetre-bright starless core and two protostellar sources. There appears to be an evolutionary gradient along the isolated filament that L43 is embedded within, with the most evolved source closest to the Sco OB2 association. One of the protostars drives a CO outflow that has created a cavity to the southeast. We see a magnetic field that appears to be aligned with the cavity walls of the outflow, suggesting interaction with the outflow. We also find a magnetic field strength of up to $\sim$160$\pm$30 $\mu$G in the main starless core and up to $\sim$90$\pm$40 $\mu$G in the more diffuse, extended region. These field strengths give magnetically super- and sub-critical values respectively and both are found to be roughly trans-Alfv\'enic. We also present a new method of data reduction for these denser but fainter objects like starless cores., Comment: Accepted for publication in ApJ. 23 pages, 9 figures (7 main text, 2 appendix)
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- 2023
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7. First BISTRO observations of the dark cloud Taurus L1495A-B10: the role of the magnetic field in the earliest stages of low-mass star formation
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Ward-Thompson, Derek, Karoly, Janik, Pattle, Kate, Whitworth, Anthony, Kirk, Jason, Berry, David, Bastien, Pierre, Ching, Tao-Chung, Coude, Simon, Hwang, Jihye, Kwon, Woojin, Soam, Archana, Wang, Jia-Wei, Hasegawa, Tetsuo, Lai, Shih-Ping, Qiu, Keping, Arzoumanian, Doris, Bourke, Tyler L., Byun, Do-Young, Chen, Huei-Ru Vivien, Chen, Wen Ping, Chen, Mike, Chen, Zhiwei, Cho, Jungyeon, Choi, Minho, Choi, Youngwoo, Choi, Yunhee, Chrysostomou, Antonio, Chung, Eun Jung, Dai, Sophia, Debattista, Victor, Di Francesco, James, Diep, Pham Ngoc, Doi, Yasuo, Duan, Hao-Yuan, Duan, Yan, Eswaraiah, Chakali, Fanciullo, Lapo, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Furuya, Ray, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hayashi, Saeko, Hoang, Thiem, Houde, Martin, Hull, Charles L. H., Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Johnstone, Doug, Konyves, Vera, Kang, Ji-hyun, Kang, Miju, Kataoka, Akimasa, Kawabata, Koji, Kemper, Francisca, Kim, Jongsoo, Kim, Shinyoung, Kim, Gwanjeong, Kim, Kyoung Hee, Kim, Mi-Ryang, Kim, Kee-Tae, Kim, Hyosung, Kirchschlager, Florian, Kobayashi, Masato I. N., Koch, Patrick M., Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Chang Won, Lee, Hyeseung, Lee, Yong-Hee, Lee, Chin-Fei, Lee, Jeong-Eun, Lee, Sang-Sung, Li, Dalei, Li, Di, Li, Guangxing, Li, Hua-bai, Lin, Sheng-Jun, Liu, Hong-Li, Liu, Tie, Liu, Sheng-Yuan, Liu, Junhao, Longmore, Steven, Lu, Xing, Lyo, A-Ran, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ngoc, Nguyen Bich, Ohashi, Nagayoshi, Onaka, Takashi, Park, Geumsook, Parsons, Harriet, Peretto, Nicolas, Priestley, Felix, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Jonathan, Rawlings, Mark, Retter, Brendan, Richer, John, Rigby, Andrew, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Seta, Masumichi, Shimajiri, Yoshito, Shinnaga, Hiroko, Tahani, Mehrnoosh, Tamura, Motohide, Tang, Ya-Wen, Tang, Xindi, Tomisaka, Kohji, Tram, Le Ngoc, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Wu, Jintai, Xie, Jinjin, Yang, Meng-Zhe, Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Guoyin, Zhang, Yapeng, Zhang, Chuan-Peng, Zhou, Jianjun, Zhu, Lei, de Looze, Ilse, Andre, Philippe, Dowell, C. Darren, Eden, David, Eyres, Stewart, Falle, Sam, Gouellec, Valentin J. M. Le, Poidevin, Frederick, Robitaille, Jean-Francois, and van Loo, Sven
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Astrophysics - Astrophysics of Galaxies ,Astrophysics - Solar and Stellar Astrophysics - Abstract
We present BISTRO Survey 850 {\mu}m dust emission polarisation observations of the L1495A-B10 region of the Taurus molecular cloud, taken at the JCMT. We observe a roughly triangular network of dense filaments. We detect 9 of the dense starless cores embedded within these filaments in polarisation, finding that the plane-of-sky orientation of the core-scale magnetic field lies roughly perpendicular to the filaments in almost all cases. We also find that the large-scale magnetic field orientation measured by Planck is not correlated with any of the core or filament structures, except in the case of the lowest-density core. We propose a scenario for early prestellar evolution that is both an extension to, and consistent with, previous models, introducing an additional evolutionary transitional stage between field-dominated and matter-dominated evolution, observed here for the first time. In this scenario, the cloud collapses first to a sheet-like structure. Uniquely, we appear to be seeing this sheet almost face-on. The sheet fragments into filaments, which in turn form cores. However, the material must reach a certain critical density before the evolution changes from being field-dominated to being matter-dominated. We measure the sheet surface density and the magnetic field strength at that transition for the first time and show consistency with an analytical prediction that had previously gone untested for over 50 years (Mestel 1965)., Comment: 14 pages, 5 figures. ApJ accepted
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- 2023
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8. JCMT BISTRO Observations: Magnetic Field Morphology of Bubbles Associated with NGC 6334
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Tahani, Mehrnoosh, Bastien, Pierre, Furuya, Ray S., Pattle, Kate, Johnstone, Doug, Arzoumanian, Doris, Doi, Yasuo, Hasegawa, Tetsuo, Inutsuka, Shu-ichiro, Coudé, Simon, Fissel, Laura, Chen, Michael Chun-Yuan, Poidevin, Frédérick, Sadavoy, Sarah, Friesen, Rachel, Koch, Patrick M., Di Francesco, James, Moriarty-Schieven, Gerald H., Chen, Zhiwei, Chung, Eun Jung, Eswaraiah, Chakali, Fanciullo, Lapo, Gledhill, Tim, Gouellec, Valentin J. M. Le, Hoang, Thiem, Hwang, Jihye, Kang, Ji-hyun, Kim, Kyoung Hee, Kirchschlager, Florian, Kwon, Woojin, Lee, Chang Won, Liu, Hong-Li, Onaka, Takashi, Rawlings, Mark G., Soam, Archana, Tamura, Motohide, Tang, Xindi, Tomisaka, Kohji, Whitworth, Anthony P., Kwon, Jungmi, Hoang, Thuong D., Redman, Matt, Berry, David, Ching, Tao-Chung, Wang, Jia-Wei, Lai, Shih-Ping, Qiu, Keping, Ward-Thompson, Derek, Houde, Martin, Byun, Do-Young, Chen, Huei-Ru Vivien, Chen, Wen Ping, Cho, Jungyeon, Choi, Minho, Choi, Yunhee, Chrysostomou, Antonio, Diep, Pham Ngoc, Duan, Hao-Yuan, Fiege, Jason, Franzmann, Erica, Friberg, Per, Fuller, Gary, Graves, Sarah F., Greaves, Jane S., Griffin, Matt J., Gu, Qilao, Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko S., Hull, Charles L. H., Inoue, Tsuyoshi, Iwasaki, Kazunari, Jeong, Il-Gyo, Kanamori, Yoshihiro, Kang, Miju, Kang, Sung-ju, Kataoka, Akimasa, Kawabata, Koji S., Kemper, Francisca, Kim, Gwanjeong, Kim, Jongsoo Hee, Kim, Kee-Tae, Kim, Mi-Ryang, Kim, Shinyoung, Kirk, Jason M., Kobayashi, Masato I. N., Konyves, Vera, Kusune, Takayoshi, Lacaille, Kevin, Law, Chi-Yan, Lee, Chin-Fei, Lee, Hyeseung, Lee, Jeong-Eun, Lee, Sang-Sung, Lee, Yong-Hee, Li, Dalei, Li, Di, Li, Hua-bai, Liu, Junhao, Liu, Sheng-Yuan, Liu, Tie, de Looze, Ilse, Lyo, A-Ran, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda C., Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ohashi, Nagayoshi, Park, Geumsook, Parsons, Harriet, Peretto, Nicolas, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Retter, Brendan, Richer, John, Rigby, Andrew, Saito, Hiro, Savini, Giorgio, Scaife, Anna M. M., Seta, Masumichi, Shimajiri, Yoshito, Shinnaga, Hiroko, Tang, Ya-Wen, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Chuan-Peng, Zhang, Guoyin, Zhang, Yapeng, Zhou, Jianjun, Zhu, Lei, André, Philippe, Dowell, C. Darren, Eyres, Stewart P. S., Falle, Sam, van Loo, Sven, and Robitaille, Jean-François
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Astrophysics - Astrophysics of Galaxies - Abstract
We study the HII regions associated with the NGC 6334 molecular cloud observed in the sub-millimeter and taken as part of the B-fields In STar-forming Region Observations (BISTRO) Survey. In particular, we investigate the polarization patterns and magnetic field morphologies associated with these HII regions. Through polarization pattern and pressure calculation analyses, several of these bubbles indicate that the gas and magnetic field lines have been pushed away from the bubble, toward an almost tangential (to the bubble) magnetic field morphology. In the densest part of NGC 6334, where the magnetic field morphology is similar to an hourglass, the polarization observations do not exhibit observable impact from HII regions. We detect two nested radial polarization patterns in a bubble to the south of NGC 6334 that correspond to the previously observed bipolar structure in this bubble. Finally, using the results of this study, we present steps (incorporating computer vision; circular Hough Transform) that can be used in future studies to identify bubbles that have physically impacted magnetic field lines., Comment: Accepted for publication in Astrophysical Journal (ApJ)
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- 2022
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9. The JCMT BISTRO-2 Survey: Magnetic Fields of the Massive DR21 Filament
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Ching, Tao-Chung, Qiu, Keping, Li, Di, Ren, Zhiyuan, Lai, Shih-Ping, Berry, David, Pattle, Kate, Furuya, Ray, Ward-Thompson, Derek, Johnstone, Doug, Koch, Patrick M., Lee, Chang Won, Hoang, Thiem, Hasegawa, Tetsuo, Kwon, Woojin, Bastien, Pierre, Eswaraiah, Chakali, Wang, Jia-Wei, Kim, Kyoung Hee, Hwang, Jihye, Soam, Archana, Lyo, A-Ran, Liu, Junhao, Gouellec, Valentin J. M. Le, Arzoumanian, Doris, Whitworth, Anthony, Di Francesco, James, Poidevin, Frederick, Liu, Tie, Coude, Simon, Tahani, Mehrnoosh, Liu, Hong-Li, Onaka, Takashi, Li, Dalei, Tamura, Motohide, Chen, Zhiwei, Tang, Xindi, Kirchschlager, Florian, Bourke, Tyler L., Byun, Do-Young, Chen, Mike, Chen, Huei-Ru Vivien, Chen, Wen Ping, Cho, Jungyeon, Choi, Yunhee, Choi, Youngwoo, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Dai, Y. Sophia, Diep, Pham Ngoc, Doi, Yasuo, Duan, Yan, Duan, Hao-Yuan, Eden, David, Fanciullo, Lapo, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hayashi, Saeko, Houde, Martin, Hull, Charles L. H., Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Konyves, Vera, Kang, Ji-hyun, Kang, Miju, Karoly, Janik, Kataoka, Akimasa, Kawabata, Koji, Kemper, Francisca, Kim, Jongsoo, Kim, Mi-Ryang, Kim, Shinyoung, Kim, Hyosung, Kim, Kee-Tae, Kim, Gwanjeong, Kirk, Jason, Kobayashi, Masato I. N., Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Sang-Sung, Lee, Hyeseung, Lee, Jeong-Eun, Lee, Chin-Fei, Lee, Yong-Hee, Li, Guangxing, Li, Hua-bai, Lin, Sheng-Jun, Liu, Sheng-Yuan, Lu, Xing, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ngoc, Nguyen Bich, Ohashi, Nagayoshi, Park, Geumsook, Parsons, Harriet, Peretto, Nicolas, Priestley, Felix, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Mark, Rawlings, Jonathan, Retter, Brendan, Richer, John, Rigby, Andrew, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Seta, Masumichi, Shimajiri, Yoshito, Shinnaga, Hiroko, Tang, Ya-Wen, Tomisaka, Kohji, Tram, Le Ngoc, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Wu, Jintai, Xie, Jinjin, Yang, Meng-Zhe, Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Chuan-Peng, Zhang, Yapeng, Zhang, Guoyin, Zhou, Jianjun, Zhu, Lei, de Looze, Ilse, Andre, Philippe, Dowell, C. Darren, Eyres, Stewart, Falle, Sam, Robitaille, Jean-Francois, and van Loo, Sven
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Astrophysics - Astrophysics of Galaxies ,Astrophysics - Solar and Stellar Astrophysics - Abstract
We present 850 $\mu$m dust polarization observations of the massive DR21 filament from the B-fields In STar-forming Region Observations (BISTRO) survey, using the POL-2 polarimeter and the SCUBA-2 camera on the James Clerk Maxwell Telescope. We detect ordered magnetic fields perpendicular to the parsec-scale ridge of the DR21 main filament. In the sub-filaments, the magnetic fields are mainly parallel to the filamentary structures and smoothly connect to the magnetic fields of the main filament. We compare the POL-2 and Planck dust polarization observations to study the magnetic field structures of the DR21 filament on 0.1--10 pc scales. The magnetic fields revealed in the Planck data are well aligned with those of the POL-2 data, indicating a smooth variation of magnetic fields from large to small scales. The plane-of-sky magnetic field strengths derived from angular dispersion functions of dust polarization are 0.6--1.0 mG in the DR21 filament and $\sim$ 0.1 mG in the surrounding ambient gas. The mass-to-flux ratios are found to be magnetically supercritical in the filament and slightly subcritical to nearly critical in the ambient gas. The alignment between column density structures and magnetic fields changes from random alignment in the low-density ambient gas probed by Planck to mostly perpendicular in the high-density main filament probed by JCMT. The magnetic field structures of the DR21 filament are in agreement with MHD simulations of a strongly magnetized medium, suggesting that magnetic fields play an important role in shaping the DR21 main filament and sub-filaments., Comment: 26 pages, 13 figures, ApJ accepted
- Published
- 2022
- Full Text
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10. Filamentary Network and Magnetic Field Structures Revealed with BISTRO in the High-mass Star-forming Region NGC 2264: Global Properties and Local Magnetogravitational Configurations
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Wang, Jia-Wei, primary, Koch, Patrick M., additional, Clarke, Seamus D., additional, Fuller, Gary, additional, Peretto, Nicolas, additional, Tang, Ya-Wen, additional, Yen, Hsi-Wei, additional, Lai, Shih-Ping, additional, Ohashi, Nagayoshi, additional, Arzoumanian, Doris, additional, Johnstone, Doug, additional, Furuya, Ray, additional, Inutsuka, Shu-ichiro, additional, Lee, Chang Won, additional, Ward-Thompson, Derek, additional, Le Gouellec, Valentin J. M., additional, Liu, Hong-Li, additional, Fanciullo, Lapo, additional, Hwang, Jihye, additional, Pattle, Kate, additional, Poidevin, Frédérick, additional, Tahani, Mehrnoosh, additional, Onaka, Takashi, additional, Rawlings, Mark G., additional, Chung, Eun Jung, additional, Liu, Junhao, additional, Lyo, A-Ran, additional, Priestley, Felix, additional, Hoang, Thiem, additional, Tamura, Motohide, additional, Berry, David, additional, Bastien, Pierre, additional, Ching, Tao-Chung, additional, Coudé, Simon, additional, Kwon, Woojin, additional, Chen, Mike, additional, Eswaraiah, Chakali, additional, Soam, Archana, additional, Hasegawa, Tetsuo, additional, Qiu, Keping, additional, Bourke, Tyler L., additional, Byun, Do-Young, additional, Chen, Zhiwei, additional, Chen, Huei-Ru Vivien, additional, Chen, Wen Ping, additional, Cho, Jungyeon, additional, Choi, Minho, additional, Choi, Yunhee, additional, Choi, Youngwoo, additional, Chrysostomou, Antonio, additional, Dai, Sophia, additional, Di Francesco, James, additional, Diep, Pham Ngoc, additional, Doi, Yasuo, additional, Duan, Yan, additional, Duan, Hao-Yuan, additional, Eden, David, additional, Fiege, Jason, additional, Fissel, Laura M., additional, Franzmann, Erica, additional, Friberg, Per, additional, Friesen, Rachel, additional, Gledhill, Tim, additional, Graves, Sarah, additional, Greaves, Jane, additional, Griffin, Matt, additional, Gu, Qilao, additional, Han, Ilseung, additional, Hayashi, Saeko, additional, Houde, Martin, additional, Inoue, Tsuyoshi, additional, Iwasaki, Kazunari, additional, Jeong, Il-Gyo, additional, Könyves, Vera, additional, Kang, Ji-hyun, additional, Kang, Miju, additional, Karoly, Janik, additional, Kataoka, Akimasa, additional, Kawabata, Koji, additional, Khan, Zacariyya, additional, Kim, Mi-Ryang, additional, Kim, Kee-Tae, additional, Kim, Kyoung Hee, additional, Kim, Shinyoung, additional, Kim, Jongsoo, additional, Kim, Hyosung, additional, Kim, Gwanjeong, additional, Kirchschlager, Florian, additional, Kirk, Jason, additional, Kobayashi, Masato I. N., additional, Kusune, Takayoshi, additional, Kwon, Jungmi, additional, Lacaille, Kevin, additional, Law, Chi-Yan, additional, Lee, Sang-Sung, additional, Lee, Hyeseung, additional, Lee, Jeong-Eun, additional, Lee, Chin-Fei, additional, Li, Dalei, additional, Li, Hua-bai, additional, Li, Guangxing, additional, Li, Di, additional, Lin, Sheng-Jun, additional, Liu, Tie, additional, Liu, Sheng-Yuan, additional, Lu, Xing, additional, Mairs, Steve, additional, Matsumura, Masafumi, additional, Matthews, Brenda, additional, Moriarty-Schieven, Gerald, additional, Nagata, Tetsuya, additional, Nakamura, Fumitaka, additional, Nakanishi, Hiroyuki, additional, Ngoc, Nguyen Bich, additional, Park, Geumsook, additional, Parsons, Harriet, additional, Pyo, Tae-Soo, additional, Qian, Lei, additional, Rao, Ramprasad, additional, Rawlings, Jonathan, additional, Retter, Brendan, additional, Richer, John, additional, Rigby, Andrew, additional, Sadavoy, Sarah, additional, Saito, Hiro, additional, Savini, Giorgio, additional, Seta, Masumichi, additional, Sharma, Ekta, additional, Shimajiri, Yoshito, additional, Shinnaga, Hiroko, additional, Tang, Xindi, additional, Thuong, Hoang Duc, additional, Tomisaka, Kohji, additional, Tram, Le Ngoc, additional, Tsukamoto, Yusuke, additional, Viti, Serena, additional, Wang, Hongchi, additional, Whitworth, Anthony, additional, Wu, Jintai, additional, Xie, Jinjin, additional, Yang, Meng-Zhe, additional, Yoo, Hyunju, additional, Yuan, Jinghua, additional, Yun, Hyeong-Sik, additional, Zenko, Tetsuya, additional, Zhang, Chuan-Peng, additional, Zhang, Yapeng, additional, Zhang, Guoyin, additional, Zhou, Jianjun, additional, Zhu, Lei, additional, de Looze, Ilse, additional, André, Philippe, additional, Dowell, C. Darren, additional, Eyres, Stewart, additional, Falle, Sam, additional, Robitaille, Jean-François, additional, and van Loo, Sven, additional
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- 2024
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11. Offline/online attribute-based searchable encryption scheme from ideal lattices for IoT
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Yang, Yang, primary, Zhang, Guoyin, additional, Li, Sizhao, additional, and Liu, Zechao, additional
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- 2024
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12. Load-Sharing Characteristics of Lined Rock Caverns of Compressed Air Energy Storage System: A Theoretical Analysis
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Xiang, Yue, primary, Zhang, Guo-Hua, additional, Wang, Xinjin, additional, Zhang, Guoyin, additional, Xiong, Feng, additional, Tang, Zhicheng, additional, and Hua, Dongjie, additional
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- 2024
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13. Latitudinal gradient and influencing factors of deep-sea particle export along the Kyushu-Palau Ridge in the Philippine Sea
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Wang, Ziyu, primary, Fang, Chen, additional, Yang, Chenghao, additional, Zhang, Guoyin, additional, and Sun, Dong, additional
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- 2024
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14. Path Planning with Improved Dueling DQN Algorithm for UAVs in Unknown Dynamic Environment
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Wang, Wenshan, Zhang, Guoyin, Da, Qingan, Tian, Ye, Ceccarelli, Marco, Series Editor, Agrawal, Sunil K., Advisory Editor, Corves, Burkhard, Advisory Editor, Glazunov, Victor, Advisory Editor, Hernández, Alfonso, Advisory Editor, Huang, Tian, Advisory Editor, Jauregui Correa, Juan Carlos, Advisory Editor, Takeda, Yukio, Advisory Editor, and Li, Shaofan, editor
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- 2024
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15. Adversarial Training Based on Latent Distribution Calibration
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Da, Qingan, Zhang, Guoyin, Wang, Wenshan, Tian, Ye, Ceccarelli, Marco, Series Editor, Agrawal, Sunil K., Advisory Editor, Corves, Burkhard, Advisory Editor, Glazunov, Victor, Advisory Editor, Hernández, Alfonso, Advisory Editor, Huang, Tian, Advisory Editor, Jauregui Correa, Juan Carlos, Advisory Editor, Takeda, Yukio, Advisory Editor, and Li, Shaofan, editor
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- 2024
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16. Nondestructive determination of longitudinal rail stress from guided wave dispersion properties
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Chen, Hua-Peng, primary, Zhang, Guoyin, additional, Hu, Weicheng, additional, Nie, Biao, additional, Zhou, Hang, additional, Luo, Weibing, additional, and Li, Haohua, additional
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- 2023
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17. The JCMT BISTRO Survey: A Spiral Magnetic Field in a Hub-filament Structure, Monoceros R2
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Hwang, Jihye, Kim, Jongsoo, Pattle, Kate, Lee, Chang Won, Koch, Patrick M., Johnstone, Doug, Tomisaka, Kohji, Whitworth, Anthony, Furuya, Ray S., Kang, Ji-hyun, Lyo, A-Ran, Chung, Eun Jung, Arzoumanian, Doris, Park, Geumsook, Kwon, Woojin, Kim, Shinyoung, Tamura, Motohide, Kwon, Jungmi, Soam, Archana, Han, Ilseung, Hoang, Thiem, Kim, Kyoung Hee, Onaka, Takashi, Chakali, Eswaraiah, Ward-Thompson, Derek, Liu, Hong-Li, Tang, Xindi, Chen, Wen Ping, Matsumura, Masafumi, Hoang, Thuong Duc, Chen, Zhiwei, Gouellec, Valentin J. M. Le, Kirchschlager, Florian, Poidevin, Fr ed erick, Bastien, Pierre, Qiu, Keping, Hasegawa, Tetsuo, Lai, Shih-Ping, Byun, Do-Young, Cho, Jungyeon, Choi, Minho, Choi, Youngwoo, Choi, Yunhee, Jeong, Il-Gyo, Kang, Miju, Kim, Hyosung, Kim, Kee-tae, Lee, Jeong-Eun, Lee, Sang-sung, Lee, Yong-Hee, Lee, Hyeseung, Kim, Mi-Ryang, Yoo, Hyunju, Yun, Hyeong-Sik, Chen, Mike, Di Francesco, James, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Houde, Martin, Lacaille, Kevin, Matthews, Brenda, Sadavoy, Sarah, Moriarty-Schieven, Gerald, Tahani, Mehrnoosh, Ching, Tao-Chung, Dai, Y. Sophia, Duan, Yan, Gu, Qilao, Law, Chi-Yan, Li, Dalei, Li, Di, Li, Guangxing, Li, Hua-bai, Liu, Tie, Lu, Xing, Qian, Lei, Wang, Hongchi, Wu, Jintai, Xie, Jinjin, Yuan, Jinghua, Zhang, Chuan-Peng, Zhang, Guoyin, Zhang, Yapeng, Zhou, Jianjun, Zhu, Lei, Berry, David, Friberg, Per, Graves, Sarah, Liu, Junhao, Mairs, Steve, Parsons, Harriet, Rawlings, Mark, Doi, Yasuo, Hayashi, Saeko, Hull, Charles L. H., Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Kataoka, Akimasa, Kawabata, Koji, Kim, Gwanjeong, Kobayashi, Masato I. N., Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Pyo, Tae-Soo, Saito, Hiro, Seta, Masumichi, Shimajiri, Yoshito, Shinnaga, Hiroko, Tsukamoto, Yusuke, Zenko, Tetsuya, Chen, Huei-Ru Vivien, Duan, Hao-Yuan, Fanciullo, Lapo, Kemper, Francisca, Lee, Chin-Fei, Lin, Sheng-Jun, Liu, Sheng-Yuan, Ohashi, Nagayoshi, Rao, Ramprasad, Tang, Ya-Wen, Wang, Jia-Wei, Yang, Meng-Zhe, Yen, Hsi-Wei, Bourke, Tyler L., Chrysostomou, Antonio, Debattista, Victor, Eden, David, Eyres, Stewart, Falle, Sam, Fuller, Gary, Gledhill, Tim, Greaves, Jane, Griffin, Matt, Hatchell, Jennifer, Karoly, Janik, Kirk, Jason, Konyves, Vera, Longmore, Steven, van Loo, Sven, de Looze, Ilse, Peretto, Nicolas, Priestley, Felix, Rawlings, Jonathan, Retter, Brendan, Richer, John, Rigby, Andrew, Savini, Giorgio, Scaife, Anna, Viti, Serena, Diep, Pham Ngoc, Ngoc, Nguyen Bich, Tram, Le Ngoc, Andre, Philippe, Coude, Simon, Dowell, C. Darren, Friesen, Rachel, and Robitaille, Jean-Franc ois
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Astrophysics - Astrophysics of Galaxies - Abstract
We present and analyze observations of polarized dust emission at 850 $\mu$m towards the central 1 pc $\times$ 1 pc hub-filament structure of Monoceros R2 (Mon R2). The data are obtained with SCUBA-2/POL-2 on the James Clerk Maxwell Telescope (JCMT) as part of the BISTRO (B-fields in Star-forming Region Observations) survey. The orientations of the magnetic field follow the spiral structure of Mon R2, which are well-described by an axisymmetric magnetic field model. We estimate the turbulent component of the magnetic field using the angle difference between our observations and the best-fit model of the underlying large-scale mean magnetic field. This estimate is used to calculate the magnetic field strength using the Davis-Chandrasekhar-Fermi method, for which we also obtain the distribution of volume density and velocity dispersion using a column density map derived from $Herschel$ data and the C$^{18}$O ($J$ = 3-2) data taken with HARP on the JCMT, respectively. We make maps of magnetic field strengths and mass-to-flux ratios, finding that magnetic field strengths vary from 0.02 to 3.64 mG with a mean value of 1.0 $\pm$ 0.06 mG, and the mean critical mass-to-flux ratio is 0.47 $\pm$ 0.02. Additionally, the mean Alfv\'en Mach number is 0.35 $\pm$ 0.01. This suggests that in Mon R2, magnetic fields provide resistance against large-scale gravitational collapse, and magnetic pressure exceeds turbulent pressure. We also investigate the properties of each filament in Mon R2. Most of the filaments are aligned along the magnetic field direction and are magnetically sub-critical., Comment: This paper is accepted to the ApJ
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- 2022
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18. Quantum-Resistant Password-Based Threshold Single-Sign-On Authentication with Updatable Server Private Key
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Jiang, Jingwei, primary, Wang, Ding, additional, Zhang, Guoyin, additional, and Chen, Zhiyuan, additional
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- 2022
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19. Multi-party High-Dimensional Related Data Publishing via Probabilistic Principal Component Analysis and Differential Privacy
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Gu, Zhen, primary, Zhang, Guoyin, additional, and Yang, Chen, additional
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- 2022
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20. Deep learning prediction of waterflooding-based alteration of reservoir hydraulic flow unit
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Chu, Feiyue, primary, Zhang, Xianguo, additional, Zhang, Guoyin, additional, and Dong, Chunmei, additional
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- 2023
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21. Multiple Unmanned Aerial Vehicle Autonomous Path Planning Algorithm Based on Whale-Inspired Deep Q-Network
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Wang, Wenshan, primary, Zhang, Guoyin, additional, Da, Qingan, additional, Lu, Dan, additional, Zhao, Yingnan, additional, Li, Sizhao, additional, and Lang, Dapeng, additional
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- 2023
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22. Adversarial Defense Method Based on Latent Representation Guidance for Remote Sensing Image Scene Classification
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Da, Qingan, primary, Zhang, Guoyin, additional, Wang, Wenshan, additional, Zhao, Yingnan, additional, Lu, Dan, additional, Li, Sizhao, additional, and Lang, Dapeng, additional
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- 2023
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23. ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- VII. A catalogue of SiO clumps from ACA observations
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Liu, Rong, Liu, Tie, Chen, Gang, Liu, Hong-Li, Wang, Ke, Li, Jin-Zeng, Liu, Xun-Chuan, Lee, Chang Won, Goldsmith, Paul F., Juvela, Mika, Garay, Guido, Bronfman, Leonardo, Baug, Tapas, He, Jinhua, Zhang, Si-Ju, Zhang, Yong, Xu, Feng-Wei, Soam, Archana, Shen, Zhi-Qiang, Li, Shanghuo, Dewangan, Lokesh, Eswaraiah, Chakali, Wu, Yue-Fang, Qin, Sheng-Li, Tóth, L. Viktor, Ren, Zhiyuan, Zhang, Guoyin, Tej, Anandmayee, Luo, Qiuyi, Zhou, Jianwen, and Zhang, Chang
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Astrophysics - Astrophysics of Galaxies - Abstract
To understand the nature of SiO emission, we conducted ACA observations of the SiO (2-1) lines toward 146 massive star-forming regions, as part of the ALMA Three-millimeter Observations of Massive Star-forming regions (ATOMS) survey. We detected SiO emission in 128 (87.7$\%$) sources and identified 171 SiO clumps, 105 of which are spatially separated from 3 mm continuum emission. A large amount of the SiO line profiles (60$\%$) are non-Gaussian. The velocity dispersion of the SiO lines ranges from 0.3 to 5.43 km s$^{-1}$. In 63 sources the SiO clumps are associated with H$_\rm{II}$ regions characterized by H40$\alpha$ emission. We find that 68$\%$ (116) of the SiO clumps are associated with strong outflows. The median velocity dispersion of the SiO line for outflow sources and non-outflow sources is 1.91 km s$^{-1}$ and 0.99 km s$^{-1}$, respectively. These results indicate that outflow activities could be connected to strongly shocked gas. The velocity dispersion and [SiO]/[H$^{13}$CO$^+$] intensity ratio do not show any correlation with the dust temperature and particle number density of clumps. We find a positive correlation between the SiO line luminosity and the bolometric luminosity, implying stronger shock activities are associated with more luminous proto-clusters. The SiO clumps in associations with H$_\rm{II}$ regions were found to show a steeper feature in $L_\rm{sio}$/$L_\rm{bol}$. The SiO line luminosity and the fraction of shocked gas have no apparent evidence of correlation with the evolutionary stages traced by luminosity to mass ratio ($L_\rm{bol}/M$)., Comment: 18 pages, 10 figures
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- 2022
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24. B-fields in Star-Forming Region Observations (BISTRO): Magnetic Fields in the Filamentary Structures of Serpens Main
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Kwon, Woojin, Pattle, Kate, Sadavoy, Sarah, Hull, Charles L. H., Johnstone, Doug, Ward-Thompson, Derek, Di Francesco, James, Koch, Patrick M., Furuya, Ray, Doi, Yasuo, Gouellec, Valentin J. M. Le, Hwang, Jihye, Lyo, A-Ran, Soam, Archana, Tang, Xindi, Hoang, Thiem, Kirchschlager, Florian, Eswaraiah, Chakali, Fanciullo, Lapo, Kim, Kyoung Hee, Onaka, Takashi, Könyves, Vera, Kang, Ji-hyun, Lee, Chang Won, Tamura, Motohide, Bastien, Pierre, Hasegawa, Tetsuo, Lai, Shih-Ping, Qiu, Keping, Berry, David, Arzoumanian, Doris, Bourke, Tyler L., Byun, Do-Young, Chen, Wen Ping, Chen, Huei-Ru Vivien, Chen, Mike, Chen, Zhiwei, Ching, Tao-Chung, Cho, Jungyeon, Choi, Yunhee, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Coudé, Simon, Dai, Sophia, Diep, Pham Ngoc, Duan, Yan, Duan, Hao-Yuan, Eden, David, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko, Houde, Martin, Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Kang, Miju, Karoly, Janik, Kataoka, Akimasa, Kawabata, Koji, Kemper, Francisca, Kim, Kee-Tae, Kim, Gwanjeong, Kim, Mi-Ryang, Kim, Shinyoung, Kim, Jongsoo, Kirk, Jason, Kobayashi, Masato I. N., Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Chin-Fei, Lee, Yong-Hee, Lee, Hyeseung, Lee, Jeong-Eun, Lee, Sang-Sung, Li, Dalei, Li, Di, Li, Hua-bai, Lin, Sheng-Jun, Liu, Sheng-Yuan, Liu, Hong-Li, Liu, Junhao, Liu, Tie, Lu, Xing, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ngoc, Nguyen Bich, Ohashi, Nagayoshi, Park, Geumsook, Parsons, Harriet, Peretto, Nicolas, Priestley, Felix, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Jonathan, Rawlings, Mark G., Retter, Brendan, Richer, John, Rigby, Andrew, Saito, Hiro, Savini, Giorgio, Seta, Masumichi, Shimajiri, Yoshito, Shinnaga, Hiroko, Tahani, Mehrnoosh, Tang, Ya-Wen, Tomisaka, Kohji, Tram, Le Ngoc, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Wang, Jia-Wei, Whitworth, Anthony, Wu, Jintai, Xie, Jinjin, Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Yapeng, Zhang, Chuan-Peng, Zhang, Guoyin, Zhou, Jianjun, Zhu, Lei, de Looze, Ilse, André, Philippe, Dowell, C. Darren, Eyres, Stewart, Falle, Sam, Robitaille, Jean-François, and van Loo, Sven
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Astrophysics - Astrophysics of Galaxies ,Astrophysics - Solar and Stellar Astrophysics - Abstract
We present 850 $\mu$m polarimetric observations toward the Serpens Main molecular cloud obtained using the POL-2 polarimeter on the James Clerk Maxwell Telescope (JCMT) as part of the B-fields In STar-forming Region Observations (BISTRO) survey. These observations probe the magnetic field morphology of the Serpens Main molecular cloud on about 6000 au scales, which consists of cores and six filaments with different physical properties such as density and star formation activity. Using the histogram of relative orientation (HRO) technique, we find that magnetic fields are parallel to filaments in less dense filamentary structures where $N_{H_2} < 0.93\times 10^{22}$ cm$^{-2}$ (magnetic fields perpendicular to density gradients), while being perpendicular to filaments (magnetic fields parallel to density gradients) in dense filamentary structures with star formation activity. Moreover, applying the HRO technique to denser core regions, we find that magnetic field orientations change to become perpendicular to density gradients again at $N_{H_2} \approx 4.6 \times 10^{22}$ cm$^{-2}$. This can be interpreted as a signature of core formation. At $N_{H_2} \approx 16 \times 10^{22}$ cm$^{-2}$ magnetic fields change back to being parallel to density gradients once again, which can be understood to be due to magnetic fields being dragged in by infalling material. In addition, we estimate the magnetic field strengths of the filaments ($B_{POS} = 60-300~\mu$G)) using the Davis-Chandrasekhar-Fermi method and discuss whether the filaments are gravitationally unstable based on magnetic field and turbulence energy densities., Comment: 18 pages, accepted for publication in ApJ
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- 2022
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25. The JCMT BISTRO Survey: An 850/450$\mu$m Polarization Study of NGC 2071IR in OrionB
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Lyo, A-Ran, Kim, Jongsoo, Sadavoy, Sarah, Johnstone, Doug, Berry, David, Pattle, Kate, Kwon, Woojin, Bastien, Pierre, Onaka, Takashi, Di Francesco, James, Kang, Ji-Hyun, Furuya, Ray, Hull, Charles L. H., Tamura, Motohide, Koch, Patrick M., Ward-Thompson, Derek, Hasegawa, Tetsuo, Hoang, Thiem, Arzoumanian, Doris, Lee, Chang Won, Lee, Chin-Fei, Byun, Do-Young, Kirchschlager, Florian, Doi, Yasuo, Kim, Kee-Tae, Hwang, Jihye, Diep, Pham Ngoc, Fanciullo, Lapo, Lee, Sang-Sung, Park, Geumsook, Yoo, Hyunju, Chung, Eun Jung, Whitworth, Anthony, Mairs, Steve, Soam, Archana, Liu, Tie, Tang, Xindi, Coudé, Simon, André, Philippe, Bourke, Tyler L., Chen, Huei-Ru Vivien, Chen, Zhiwei, Chen, Wen Ping, Chen, Mike, Ching, Tao-Chung, Cho, Jungyeon, Choi, Minho, Choi, Yunhee, Chrysostomou, Antonio, Dai, Sophia, Dowell, C. Darren, Duan, Hao-Yuan, Duan, Yan, Eden, David, Eswaraiah, Chakali, Eyres, Stewart, Fiege, Jason, Fisse, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hatchell, Jannifer, Hayashi, Saeko, Houde, Martin, Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Kang, Miju, Kataoka, Akimasa, Kawabata, Koji, Kemper, Francisca, Kim, Gwanjeong, Kim, Mi-Ryang, Kim, Shinyoung, Kim, Kyoung Hee, Kirk, Jason, Kobayashi, Masato I. N., Könyves, Vera, Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Lai, Shih-Ping, Law, Chi-Yan, Lee, Jeong-Eun, Lee, Yong-Hee, Lee, Hyeseung, Li, Dalei, Li, Di, Li, Hua-Bai, Liu, Hong-Li, Liu, Junhao, Liu, Sheng-Yuan, Lu, Xing, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ngoc, Nguyen Bich, Ohashi, Nagayoshi, Parsons, Harriet, Peretto, Nicolas, Priestley, Felix, Pyo, Tae-soo, Qian, Lei, Qiu, Keping, Rao, Ramprasad, Rawlings, Jonathan, Rawlings, Mark G., Retter, Brendan, Richer, John, Rigby, Andrew, Saito, Hiro, Savini, Giorgio, Scaife, Anna, Seta, Masumichi, Shimajiri, Yoshito, Shinnaga, Hiroko, Tahani, Mehrnoosh, Tang, Ya-Wen, Tomisaka, Kohji, Tram, Le Ngoc, Tsukamoto, Yusuke, Viti, Serena, Wang, Jia-Wei, Wang, Hongchi, Xie, Jinjin, Yen, Hsi-Wei, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Guoyin, Zhang, Chuan-Peng, Zhang, Yapeng, Zhou, Jianjun, Zhu, Lei, and de Looze, Ilse
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Astrophysics - Astrophysics of Galaxies - Abstract
We present the results of simultaneous 450 $\mu$m and 850 $\mu$m polarization observations toward the massive star forming region NGC 2071IR, a target of the BISTRO (B-fields in Star-Forming Region Observations) Survey, using the POL-2 polarimeter and SCUBA-2 camera mounted on the James Clerk Maxwell Telescope. We find a pinched magnetic field morphology in the central dense core region, which could be due to a rotating toroidal disk-like structure and a bipolar outflow originating from the central young stellar object, IRS 3. Using the modified Davis-Chandrasekhar-Fermi method, we obtain a plane-of-sky magnetic field strength of 563$\pm$421 $\mu$G in the central $\sim$0.12 pc region from 850 $\mu$m polarization data. The corresponding magnetic energy density of 2.04$\times$10$^{-8}$ erg cm$^{-3}$ is comparable to the turbulent and gravitational energy densities in the region. We find that the magnetic field direction is very well aligned with the whole of the IRS 3 bipolar outflow structure. We find that the median value of polarization fractions, 3.0 \%, at 450 $\mu$m in the central 3 arcminute region, which is larger than the median value of 1.2 \% at 850 $\mu$m. The trend could be due to the better alignment of warmer dust in the strong radiation environment. We also find that polarization fractions decrease with intensity at both wavelengths, with slopes, determined by fitting a Rician noise model, of $0.59 \pm 0.03$ at 450 $\mu$m and $0.36 \pm 0.04$ at 850 $\mu$m, respectively. We think that the shallow slope at 850 $\mu$m is due to grain alignment at the center being assisted by strong radiation from the central young stellar objects., Comment: 17 pages, 11 figures, 4 tables
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- 2021
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26. Research and Application of Material Data for Digital Manufacturing
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Wang, Ganlong, primary, Zhang, Guoyin, additional, Wang, Jichang, additional, and Chen, Jianxun, additional
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- 2023
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27. The JCMT BISTRO Survey: Studying the Complex Magnetic Field of L43
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Karoly, Janik, primary, Ward-Thompson, Derek, additional, Pattle, Kate, additional, Berry, David, additional, Whitworth, Anthony, additional, Kirk, Jason, additional, Bastien, Pierre, additional, Ching, Tao-Chung, additional, Coudé, Simon, additional, Hwang, Jihye, additional, Kwon, Woojin, additional, Soam, Archana, additional, Wang, Jia-Wei, additional, Hasegawa, Tetsuo, additional, Lai, Shih-Ping, additional, Qiu, Keping, additional, Arzoumanian, Doris, additional, Bourke, Tyler L., additional, Byun, Do-Young, additional, Chen, Huei-Ru Vivien, additional, Chen, Wen Ping, additional, Chen, Mike, additional, Chen, Zhiwei, additional, Cho, Jungyeon, additional, Choi, Minho, additional, Choi, Youngwoo, additional, Choi, Yunhee, additional, Chrysostomou, Antonio, additional, Chung, Eun Jung, additional, Dai, Sophia, additional, Debattista, Victor, additional, Di Francesco, James, additional, Diep, Pham Ngoc, additional, Doi, Yasuo, additional, Duan, Hao-Yuan, additional, Duan, Yan, additional, Eswaraiah, Chakali, additional, Fanciullo, Lapo, additional, Fiege, Jason, additional, Fissel, Laura M., additional, Franzmann, Erica, additional, Friberg, Per, additional, Friesen, Rachel, additional, Fuller, Gary, additional, Furuya, Ray, additional, Gledhill, Tim, additional, Graves, Sarah, additional, Greaves, Jane, additional, Griffin, Matt, additional, Gu, Qilao, additional, Han, Ilseung, additional, Hoang, Thiem, additional, Houde, Martin, additional, Hull, Charles L. H., additional, Inoue, Tsuyoshi, additional, Inutsuka, Shu-ichiro, additional, Iwasaki, Kazunari, additional, Jeong, Il-Gyo, additional, Johnstone, Doug, additional, Könyves, Vera, additional, Kang, Ji-hyun, additional, Kang, Miju, additional, Kataoka, Akimasa, additional, Kawabata, Koji, additional, Kemper, Francisca, additional, Kim, Jongsoo, additional, Kim, Shinyoung, additional, Kim, Gwanjeong, additional, Kim, Kyoung Hee, additional, Kim, Mi-Ryang, additional, Kim, Kee-Tae, additional, Kim, Hyosung, additional, Kirchschlager, Florian, additional, Kobayashi, Masato I. N., additional, Koch, Patrick M., additional, Kusune, Takayoshi, additional, Kwon, Jungmi, additional, Lacaille, Kevin, additional, Law, Chi-Yan, additional, Lee, Chang Won, additional, Lee, Hyeseung, additional, Lee, Yong-Hee, additional, Lee, Chin-Fei, additional, Lee, Jeong-Eun, additional, Lee, Sang-Sung, additional, Li, Dalei, additional, Li, Di, additional, Li, Guangxing, additional, Li, Hua-bai, additional, Lin, Sheng-Jun, additional, Liu, Hong-Li, additional, Liu, Tie, additional, Liu, Sheng-Yuan, additional, Liu, Junhao, additional, Longmore, Steven, additional, Lu, Xing, additional, Lyo, A-Ran, additional, Mairs, Steve, additional, Matsumura, Masafumi, additional, Matthews, Brenda, additional, Moriarty-Schieven, Gerald, additional, Nagata, Tetsuya, additional, Nakamura, Fumitaka, additional, Nakanishi, Hiroyuki, additional, Ngoc, Nguyen Bich, additional, Ohashi, Nagayoshi, additional, Onaka, Takashi, additional, Park, Geumsook, additional, Parsons, Harriet, additional, Peretto, Nicolas, additional, Priestley, Felix, additional, Pyo, Tae-Soo, additional, Qian, Lei, additional, Rao, Ramprasad, additional, Rawlings, Jonathan, additional, Rawlings, Mark, additional, Retter, Brendan, additional, Richer, John, additional, Rigby, Andrew, additional, Sadavoy, Sarah, additional, Saito, Hiro, additional, Savini, Giorgio, additional, Seta, Masumichi, additional, Sharma, Ekta, additional, Shimajiri, Yoshito, additional, Shinnaga, Hiroko, additional, Tahani, Mehrnoosh, additional, Tamura, Motohide, additional, Tang, Ya-Wen, additional, Tang, Xindi, additional, Tomisaka, Kohji, additional, Tram, Le Ngoc, additional, Tsukamoto, Yusuke, additional, Viti, Serena, additional, Wang, Hongchi, additional, Wu, Jintai, additional, Xie, Jinjin, additional, Yang, Meng-Zhe, additional, Yen, Hsi-Wei, additional, Yoo, Hyunju, additional, Yuan, Jinghua, additional, Yun, Hyeong-Sik, additional, Zenko, Tetsuya, additional, Zhang, Guoyin, additional, Zhang, Yapeng, additional, Zhang, Chuan-Peng, additional, Zhou, Jianjun, additional, Zhu, Lei, additional, de Looze, Ilse, additional, André, Philippe, additional, Dowell, C. Darren, additional, Eden, David, additional, Eyres, Stewart, additional, Falle, Sam, additional, Le Gouellec, Valentin J. M., additional, Poidevin, Frédérick, additional, Robitaille, Jean-François, additional, and van Loo, Sven, additional
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- 2023
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28. Revealing the diverse magnetic field morphologies in Taurus dense cores with sensitive sub-millimeter polarimetry
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Eswaraiah, Chakali, Li, Di, Furuya, Ray S., Hasegawa, Tetsuo, Ward-Thompson, Derek, Qiu, Keping, Ohashi, Nagayoshi, Pattle, Kate, Sadavoy, Sarah, Hull, Charles L. H., Berry, David, Doi, Yasuo, Ching, Tao-Chung, Lai, Shih-Ping, Wang, Jia-Wei, Koch, Patrick M., Kwon, Jungmi, Kwon, Woojin, Bastien, Pierre, Arzoumanian, Doris, Coudé, Simon, Soam, Archana, Fanciullo, Lapo, Yen, Hsi-Wei, Liu, Junhao, Hoang, Thiem, Chen, Wen Ping, Shimajiri, Yoshito, Liu, Tie, Chen, Zhiwei, Li, Hua-bai, Lyo, A-Ran, Hwang, Jihye, Johnstone, Doug, Rao, Ramprasad, Ngoc, Nguyen Bich, Diep, Pham Ngoc, Mairs, Steve, Parsons, Harriet, Tamura, Motohide, Tahani, Mehrnoosh, Chen, Huei-Ru Vivien, Nakamura, Fumitaka, Shinnaga, Hiroko, Tang, Ya-Wen, Cho, Jungyeon, Lee, Chang Won, Inutsuka, Shu-ichiro, Inoue, Tsuyoshi, Iwasaki, Kazunari, Qian, Lei, Xie, Jinjin, Li, Dalei, Liu, Hong-Li, Zhang, Chuan-Peng, Chen, Mike, Zhang, Guoyin, Zhu, Lei, Zhou, Jianjun, André, Philippe, Liu, Sheng-Yuan, Yuan, Jinghua, Lu, Xing, Peretto, Nicolas, Bourke, Tyler L., Byun, Do-Young, Dai, Sophia, Duan, Yan, Duan, Hao-Yuan, Eden, David, Matthews, Brenda, Fiege, Jason, Fissel, Laura M., Kim, Kee-Tae, Lee, Chin-Fei, Kim, Jongsoo, Pyo, Tae-Soo, Choi, Yunhee, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Tram, Le Ngoc, Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko, Houde, Martin, Kawabata, Koji, Jeong, Il-Gyo, Kang, Ji-hyun, Kang, Sung-ju, Kang, Miju, Kataoka, Akimasa, Kemper, Francisca, Rawlings, Mark, Rawlings, Jonathan, Retter, Brendan, Richer, John, Rigby, Andrew, Saito, Hiro, Savini, Giorgio, Scaife, Anna, Seta, Masumichi, Kim, Gwanjeong, Kim, Kyoung Hee, Kim, Mi-Ryang, Kirchschlager, Florian, Kirk, Jason, Kobayashi, Masato I. N., Konyves, Vera, Kusune, Takayoshi, Lacaille, Kevin, Law, Chi-Yan, Lee, Sang-Sung, Lee, Yong-Hee, Matsumura, Masafumi, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakanishi, Hiroyuki, Onaka, Takashi, Park, Geumsook, Tang, Xindi, Tomisaka, Kohji, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Whitworth, Anthony, Yoo, Hyunju, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Yapeng, de Looze, Ilse, Dowell, C. Darren, Eyres, Stewart, Falle, Sam, Robitaille, Jean-François, and van Loo, Sven
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Astrophysics - Astrophysics of Galaxies - Abstract
We have obtained sensitive dust continuum polarization observations at 850 $\mu$m in the B213 region of Taurus using POL-2 on SCUBA-2 at the James Clerk Maxwell Telescope (JCMT), as part of the BISTRO (B-fields in STar-forming Region Observations) survey. These observations allow us to probe magnetic field (B-field) at high spatial resolution ($\sim$2000 au or $\sim$0.01 pc at 140 pc) in two protostellar cores (K04166 and K04169) and one prestellar core (Miz-8b) that lie within the B213 filament. Using the Davis-Chandrasekhar-Fermi method, we estimate the B-field strengths in K04166, K04169, and Miz-8b to be 38$\pm$14 $\mu$G, 44$\pm$16 $\mu$G, and 12$\pm$5 $\mu$G, respectively. These cores show distinct mean B-field orientations. B-field in K04166 is well ordered and aligned parallel to the orientations of the core minor axis, outflows, core rotation axis, and large-scale uniform B-field, in accordance with magnetically regulated star formation via ambipolar diffusion taking place in K04166. B-field in K04169 is found to be ordered but oriented nearly perpendicular to the core minor axis and large-scale B-field, and not well-correlated with other axes. In contrast, Miz-8b exhibits disordered B-field which show no preferred alignment with the core minor axis or large-scale field. We found that only one core, K04166, retains a memory of the large-scale uniform B-field. The other two cores, K04169 and Miz-8b, are decoupled from the large-scale field. Such a complex B-field configuration could be caused by gas inflow onto the filament, even in the presence of a substantial magnetic flux., Comment: 20 pages (10 are main), 5 figures (3 are main), and 3 tables (2 are main); Accepted for its publication in ApJL
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- 2021
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29. Observations of magnetic fields surrounding LkH$\alpha$ 101 taken by the BISTRO survey with JCMT-POL-2
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Ngoc, Nguyen Bich, Diep, Pham Ngoc, Parsons, Harriet, Pattle, Kate, Hoang, Thiem, Ward-Thompson, Derek, Tram, Le Ngoc, Hull, Charles L. H., Tahani, Mehrnoosh, Furuya, Ray, Bastien, Pierre, Qiu, Keping, Hasegawa, Tetsuo, Kwon, Woojin, Doi, Yasuo, Lai, Shih-Ping, Coude, Simon, Berry, David, Ching, Tao-Chung, Hwang, Jihye, Soam, Archana, Wang, Jia-Wei, Arzoumanian, Doris, Bourke, Tyler L., Byun, Do-Young, Chen, Huei-Ru Vivien, Chen, Zhiwei, Chen, Wen Ping, Chen, Mike, Cho, Jungyeon, Choi, Yunhee, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Dai, Sophia, Di Francesco, James, Duan, Yan, Duan, Hao-Yuan, Eden, David, Eswaraiah, Chakali, Fanciullo, Lapo, Fiege, Jason, Fissel, Laura M., Franzmann, Erica, Friberg, Per, Friesen, Rachel, Fuller, Gary, Gledhill, Tim, Graves, Sarah, Greaves, Jane, Griffin, Matt, Gu, Qilao, Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko, Houde, Martin, Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Johnstone, Doug, Kang, Ji-hyun, Kang, Sung-ju, Kang, Miju, Kataoka, Akimasa, Kawabata, Koji, Kemper, Francisca, Kim, Kee-Tae, Kim, Jongsoo, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Mark, Rawlings, Jonathan, Retter, Brendan, Richer, John, Rigby, Andrew, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Scaife, Anna, Seta, Masumichi, Kim, Gwanjeong, Kim, Shinyoung, Kim, Kyoung Hee, Kim, Mi-Ryang, Kirchschlager, Florian, Kirk, Jason, Kobayashi, Masato I. N., Koch, Patrick M., Konyves, Vera, Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Sang-Sung, Lee, Yong-Hee, Lee, Chin-Fei, Lee, Jeong-Eun, Lee, Hyeseung, Lee, Chang Won, Li, Di, Li, Hua-bai, Li, Dalei, Liu, Hong-Li, Liu, Junhao, Liu, Tie, Liu, Sheng-Yuan, Lu, Xing, Lyo, A-Ran, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda, Moriarty-Schieven, Gerald, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ohashi, Nagayoshi, Onaka, Takashi, Park, Geumsook, Peretto, Nicolas, Shimajiri, Yoshito, Shinnaga, Hiroko, Tamura, Motohide, Tang, Ya-Wen, Tang, Xindi, Tomisaka, Kohji, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Whitworth, Anthony, Xie, Jinjin, Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Yapeng, Zhang, Chuan-Peng, Zhang, Guoyin, Zhou, Jianjun, Zhu, Lei, de Looze, Ilse, Andre, Philippe, Dowell, C. Darren, Eyres, Stewart, Falle, Sam, Robitaille, Jean-Francois, and van Loo, Sven
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Astrophysics - Astrophysics of Galaxies ,Astrophysics - Solar and Stellar Astrophysics - Abstract
We report the first high spatial resolution measurement of magnetic fields surrounding LkH$\alpha$ 101, a part of the Auriga-California molecular cloud. The observations were taken with the POL-2 polarimeter on the James Clerk Maxwell Telescope within the framework of the B-fields In Star-forming Region Observations (BISTRO) survey. Observed polarization of thermal dust emission at 850 $\mu$m is found to be mostly associated with the red-shifted gas component of the cloud. The magnetic field displays a relatively complex morphology. Two variants of the Davis-Chandrasekhar-Fermi method, unsharp masking and structure function, are used to calculate the strength of magnetic fields in the plane of the sky, yielding a similar result of $B_{\rm POS}\sim 115$ $\mathrm{\mu}$G. The mass-to-magnetic-flux ratio in critical value units, $\lambda\sim0.3$, is the smallest among the values obtained for other regions surveyed by POL-2. This implies that the LkH$\alpha$ 101 region is sub-critical and the magnetic field is strong enough to prevent gravitational collapse. The inferred $\delta B/B_0\sim 0.3$ implies that the large scale component of the magnetic field dominates the turbulent one. The variation of the polarization fraction with total emission intensity can be fitted by a power-law with an index of $\alpha=0.82\pm0.03$, which lies in the range previously reported for molecular clouds. We find that the polarization fraction decreases rapidly with proximity to the only early B star (LkH$\alpha$ 101) in the region. The magnetic field tangling and the joint effect of grain alignment and rotational disruption by radiative torques are potential of explaining such a decreasing trend., Comment: 25 pages, 19 figures, Accepted for publication in The Astrophysical Journal
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- 2020
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30. Geology context, vent morphology, and sulfide paragenesis of the Longqi-1 modern seafloor hydrothermal system on the ultraslow-spreading Southwest Indian ridge
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Liang, Jin, primary, Tao, Chunhui, additional, Zheng, Yi, additional, Zhang, Guoyin, additional, Su, Cheng, additional, Yang, Weifang, additional, Liao, Shili, additional, and Wang, Nannan, additional
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- 2023
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31. First BISTRO Observations of the Dark Cloud Taurus L1495A-B10: The Role of the Magnetic Field in the Earliest Stages of Low-mass Star Formation
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Ward-Thompson, Derek, primary, Karoly, Janik, additional, Pattle, Kate, additional, Whitworth, Anthony, additional, Kirk, Jason, additional, Berry, David, additional, Bastien, Pierre, additional, Ching, Tao-Chung, additional, Coudé, Simon, additional, Hwang, Jihye, additional, Kwon, Woojin, additional, Soam, Archana, additional, Wang, Jia-Wei, additional, Hasegawa, Tetsuo, additional, Lai, Shih-Ping, additional, Qiu, Keping, additional, Arzoumanian, Doris, additional, Bourke, Tyler L., additional, Byun, Do-Young, additional, Chen, Huei-Ru Vivien, additional, Chen, Wen Ping, additional, Chen, Mike, additional, Chen, Zhiwei, additional, Cho, Jungyeon, additional, Choi, Minho, additional, Choi, Youngwoo, additional, Choi, Yunhee, additional, Chrysostomou, Antonio, additional, Chung, Eun Jung, additional, Dai, Sophia, additional, Debattista, Victor, additional, Di Francesco, James, additional, Diep, Pham Ngoc, additional, Doi, Yasuo, additional, Duan, Hao-Yuan, additional, Duan, Yan, additional, Eswaraiah, Chakali, additional, Fanciullo, Lapo, additional, Fiege, Jason, additional, Fissel, Laura M., additional, Franzmann, Erica, additional, Friberg, Per, additional, Friesen, Rachel, additional, Fuller, Gary, additional, Furuya, Ray, additional, Gledhill, Tim, additional, Graves, Sarah, additional, Greaves, Jane, additional, Griffin, Matt, additional, Gu, Qilao, additional, Han, Ilseung, additional, Hayashi, Saeko, additional, Hoang, Thiem, additional, Houde, Martin, additional, Hull, Charles L. H., additional, Inoue, Tsuyoshi, additional, Inutsuka, Shu-ichiro, additional, Iwasaki, Kazunari, additional, Jeong, Il-Gyo, additional, Johnstone, Doug, additional, Könyves, Vera, additional, Kang, Ji-hyun, additional, Kang, Miju, additional, Kataoka, Akimasa, additional, Kawabata, Koji, additional, Kemper, Francisca, additional, Kim, Jongsoo, additional, Kim, Shinyoung, additional, Kim, Gwanjeong, additional, Kim, Kyoung Hee, additional, Kim, Mi-Ryang, additional, Kim, Kee-Tae, additional, Kim, Hyosung, additional, Kirchschlager, Florian, additional, Kobayashi, Masato I. N., additional, Koch, Patrick M., additional, Kusune, Takayoshi, additional, Kwon, Jungmi, additional, Lacaille, Kevin, additional, Law, Chi-Yan, additional, Lee, Chang Won, additional, Lee, Hyeseung, additional, Lee, Yong-Hee, additional, Lee, Chin-Fei, additional, Lee, Jeong-Eun, additional, Lee, Sang-Sung, additional, Li, Dalei, additional, Li, Di, additional, Li, Guangxing, additional, Li, Hua-bai, additional, Lin, Sheng-Jun, additional, Liu, Hong-Li, additional, Liu, Tie, additional, Liu, Sheng-Yuan, additional, Liu, Junhao, additional, Longmore, Steven, additional, Lu, Xing, additional, Lyo, A-Ran, additional, Mairs, Steve, additional, Matsumura, Masafumi, additional, Matthews, Brenda, additional, Moriarty-Schieven, Gerald, additional, Nagata, Tetsuya, additional, Nakamura, Fumitaka, additional, Nakanishi, Hiroyuki, additional, Ngoc, Nguyen Bich, additional, Ohashi, Nagayoshi, additional, Onaka, Takashi, additional, Park, Geumsook, additional, Parsons, Harriet, additional, Peretto, Nicolas, additional, Priestley, Felix, additional, Pyo, Tae-Soo, additional, Qian, Lei, additional, Rao, Ramprasad, additional, Rawlings, Jonathan, additional, Rawlings, Mark, additional, Retter, Brendan, additional, Richer, John, additional, Rigby, Andrew, additional, Sadavoy, Sarah, additional, Saito, Hiro, additional, Savini, Giorgio, additional, Seta, Masumichi, additional, Shimajiri, Yoshito, additional, Shinnaga, Hiroko, additional, Tahani, Mehrnoosh, additional, Tamura, Motohide, additional, Tang, Ya-Wen, additional, Tang, Xindi, additional, Tomisaka, Kohji, additional, Tram, Le Ngoc, additional, Tsukamoto, Yusuke, additional, Viti, Serena, additional, Wang, Hongchi, additional, Wu, Jintai, additional, Xie, Jinjin, additional, Yang, Meng-Zhe, additional, Yen, Hsi-Wei, additional, Yoo, Hyunju, additional, Yuan, Jinghua, additional, Yun, Hyeong-Sik, additional, Zenko, Tetsuya, additional, Zhang, Guoyin, additional, Zhang, Yapeng, additional, Zhang, Chuan-Peng, additional, Zhou, Jianjun, additional, Zhu, Lei, additional, de Looze, Ilse, additional, André, Philippe, additional, Dowell, C. Darren, additional, Eden, David, additional, Eyres, Stewart, additional, Falle, Sam, additional, Le Gouellec, Valentin J. M., additional, Poidevin, Frédérick, additional, Robitaille, Jean-François, additional, and van Loo, Sven, additional
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- 2023
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32. Underwater target detection algorithm based on improved YOLOv4 with SemiDSConv and FIoU loss function
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Zhang, Chengpengfei, primary, Zhang, Guoyin, additional, Li, Heng, additional, Liu, Hui, additional, Tan, Jie, additional, and Xue, Xiaojun, additional
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- 2023
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33. The JCMT BISTRO Survey: Magnetic Fields Associated with a Network of Filaments in NGC 1333
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Doi, Yasuo, Hasegawa, Tetsuo, Furuya, Ray S., Coudé, Simon, Hull, Charles L. H., Arzoumanian, Doris, Bastien, Pierre, Chen, Michael Chun-Yuan, di Francesco, James, Friesen, Rachel, Houde, Martin, Inutsuka, Shu-ichiro, Mairs, Steve, Matsumura, Masafumi, Onaka, Takashi, Sadavoy, Sarah, Shimajiri, Yoshito, Tahani, Mehrnoosh, Tomisaka, Kohji, Eswaraiah, Chakali, Koch, Patrick M., Pattle, Kate, Lee, Chang Won, Tamura, Motohide, Berry, David, Ching, Tao-Chung, Hwang, Jihye, Kwon, Woojin, Soam, Archana, Wang, Jia-Wei, Lai, Shih-Ping, Qiu, Keping, Ward-Thompson, Derek, Byun, Do-Young, Chen, Huei-Ru V., Chen, Wen Ping, Chen, Zhiwei, Cho, Jungyeon, Choi, Minho, Choi, Yunhee, Chrysostomou, Antonio, Chung, Eun Jung, Diep, Pham Ngoc, Duan, Hao-Yuan, Fanciullo, Lapo, Fiege, Jason, Franzmann, Erica, Friberg, Per, Fuller, Gary, Gledhill, Tim, Graves, Sarah F., Greaves, Jane S., Griffin, Matt J., Gu, Qilao, Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko S., Hoang, Thiem, Inoue, Tsuyoshi, Iwasaki, Kazunari, Jeong, Il-Gyo, Johnstone, Doug, Kanamori, Yoshihiro, Kang, Ji-hyun, Kang, Miju, Kang, Sung-Ju, Kataoka, Akimasa, Kawabata, Koji S., Kemper, Francisca, Kim, Gwanjeong, Kim, Jongsoo, Kim, Kee-Tae, Kim, Kyoung Hee, Kim, Mi-Ryang, Kim, Shinyoung, Kirk, Jason M., Kobayashi, Masato I. N., Konyves, Vera, Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin, Law, Chi-Yan, Lee, Chin-Fei, Lee, Hyeseung, Lee, Jeong-Eun, Lee, Sang-Sung, Lee, Yong-Hee, Li, Dalei, Li, Di, Li, Hua-Bai, Liu, Hong-Li, Liu, Junhao, Liu, Sheng-Yuan, Liu, Tie, de Looze, Ilse, Lyo, A-Ran, Matthews, Brenda C., Moriarty-Schieven, Gerald H., Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ohashi, Nagayoshi, Park, Geumsook, Parsons, Harriet, Peretto, Nicolas, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Mark G., Retter, Brendan, Richer, John, Rigby, Andrew, Saito, Hiro, Savini, Giorgio, Scaife, Anna M. M., Seta, Masumichi, Shinnaga, Hiroko, Tang, Ya-Wen, Tsukamoto, Yusuke, Viti, Serena, Wang, Hongchi, Whitworth, Anthony P., Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Chuan-Peng, Zhang, Guoyin, Zhang, Yapeng, Zhou, Jianjun, Zhu, Lei, André, Philippe, Dowell, C. Darren, Eyres, Stewart P. S., Falle, Sam, van Loo, Sven, and Robitaille, Jean-François
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Astrophysics - Astrophysics of Galaxies - Abstract
We present new observations of the active star-formation region NGC 1333 in the Perseus molecular cloud complex from the James Clerk Maxwell Telescope B-Fields In Star-forming Region Observations (BISTRO) survey with the POL-2 instrument. The BISTRO data cover the entire NGC 1333 complex (~1.5 pc x 2 pc) at 0.02 pc resolution and spatially resolve the polarized emission from individual filamentary structures for the first time. The inferred magnetic field structure is complex as a whole, with each individual filament aligned at different position angles relative to the local field orientation. We combine the BISTRO data with low- and high- resolution data derived from Planck and interferometers to study the multiscale magnetic field structure in this region. The magnetic field morphology drastically changes below a scale of ~1 pc and remains continuous from the scales of filaments (~0.1 pc) to that of protostellar envelopes (~0.005 pc or ~1000 au). Finally, we construct simple models in which we assume that the magnetic field is always perpendicular to the long axis of the filaments. We demonstrate that the observed variation of the relative orientation between the filament axes and the magnetic field angles are well reproduced by this model, taking into account the projection effects of the magnetic field and filaments relative to the plane of the sky. These projection effects may explain the apparent complexity of the magnetic field structure observed at the resolution of BISTRO data toward the filament network., Comment: 33 pages, 21 figures, accepted for publication in ApJ
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- 2020
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34. JCMT BISTRO Observations: Magnetic Field Morphology of Bubbles Associated with NGC 6334
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Tahani, Mehrnoosh, primary, Bastien, Pierre, additional, Furuya, Ray S., additional, Pattle, Kate, additional, Johnstone, Doug, additional, Arzoumanian, Doris, additional, Doi, Yasuo, additional, Hasegawa, Tetsuo, additional, Inutsuka, Shu-ichiro, additional, Coudé, Simon, additional, Fissel, Laura, additional, Chen, Michael Chun-Yuan, additional, Poidevin, Frédérick, additional, Sadavoy, Sarah, additional, Friesen, Rachel, additional, Koch, Patrick M., additional, Di Francesco, James, additional, Moriarty-Schieven, Gerald H., additional, Chen, Zhiwei, additional, Chung, Eun Jung, additional, Eswaraiah, Chakali, additional, Fanciullo, Lapo, additional, Gledhill, Tim, additional, Le Gouellec, Valentin J. M., additional, Hoang, Thiem, additional, Hwang, Jihye, additional, Kang, Ji-hyun, additional, Kim, Kyoung Hee, additional, Kirchschlager, Florian, additional, Kwon, Woojin, additional, Lee, Chang Won, additional, Liu, Hong-Li, additional, Onaka, Takashi, additional, Rawlings, Mark G., additional, Soam, Archana, additional, Tamura, Motohide, additional, Tang, Xindi, additional, Tomisaka, Kohji, additional, Whitworth, Anthony P., additional, Kwon, Jungmi, additional, Hoang, Thuong D., additional, Redman, Matt, additional, Berry, David, additional, Ching, Tao-Chung, additional, Wang, Jia-Wei, additional, Lai, Shih-Ping, additional, Qiu, Keping, additional, Ward-Thompson, Derek, additional, Houde, Martin, additional, Byun, Do-Young, additional, Chen, Huei-Ru Vivien, additional, Chen, Wen Ping, additional, Cho, Jungyeon, additional, Choi, Minho, additional, Choi, Yunhee, additional, Chrysostomou, Antonio, additional, Diep, Pham Ngoc, additional, Duan, Hao-Yuan, additional, Fiege, Jason, additional, Franzmann, Erica, additional, Friberg, Per, additional, Fuller, Gary, additional, Graves, Sarah F., additional, Greaves, Jane S., additional, Griffin, Matt J., additional, Gu, Qilao, additional, Han, Ilseung, additional, Hatchell, Jennifer, additional, Hayashi, Saeko S., additional, Hull, Charles L. H., additional, Inoue, Tsuyoshi, additional, Iwasaki, Kazunari, additional, Jeong, Il-Gyo, additional, Kanamori, Yoshihiro, additional, Kang, Miju, additional, Kang, Sung-ju, additional, Kataoka, Akimasa, additional, Kawabata, Koji S., additional, Kemper, Francisca, additional, Kim, Gwanjeong, additional, Kim, Jongsoo, additional, Kim, Kee-Tae, additional, Kim, Mi-Ryang, additional, Kim, Shinyoung, additional, Kirk, Jason M., additional, Kobayashi, Masato I. N., additional, Konyves, Vera, additional, Kusune, Takayoshi, additional, Lacaille, Kevin, additional, Law, Chi-Yan, additional, Lee, Chin-Fei, additional, Lee, Hyeseung, additional, Lee, Jeong-Eun, additional, Lee, Sang-Sung, additional, Lee, Yong-Hee, additional, Li, Dalei, additional, Li, Di, additional, Li, Hua-bai, additional, Liu, Junhao, additional, Liu, Sheng-Yuan, additional, Liu, Tie, additional, de Looze, Ilse, additional, Lyo, A-Ran, additional, Mairs, Steve, additional, Matsumura, Masafumi, additional, Matthews, Brenda C., additional, Nagata, Tetsuya, additional, Nakamura, Fumitaka, additional, Nakanishi, Hiroyuki, additional, Ohashi, Nagayoshi, additional, Park, Geumsook, additional, Parsons, Harriet, additional, Peretto, Nicolas, additional, Pyo, Tae-Soo, additional, Qian, Lei, additional, Rao, Ramprasad, additional, Retter, Brendan, additional, Richer, John, additional, Rigby, Andrew, additional, Saito, Hiro, additional, Savini, Giorgio, additional, Scaife, Anna M. M., additional, Seta, Masumichi, additional, Shimajiri, Yoshito, additional, Shinnaga, Hiroko, additional, Tang, Ya-Wen, additional, Tsukamoto, Yusuke, additional, Viti, Serena, additional, Wang, Hongchi, additional, Yen, Hsi-Wei, additional, Yoo, Hyunju, additional, Yuan, Jinghua, additional, Yun, Hyeong-Sik, additional, Zenko, Tetsuya, additional, Zhang, Chuan-Peng, additional, Zhang, Guoyin, additional, Zhang, Yapeng, additional, Zhou, Jianjun, additional, Zhu, Lei, additional, André, Philippe, additional, Dowell, C. Darren, additional, Eyres, Stewart P. S., additional, Falle, Sam, additional, van Loo, Sven, additional, and Robitaille, Jean-François, additional
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- 2023
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35. Gradient-free adversarial attack algorithm based on differential evolution
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Da, Qingan, primary, Zhang, Guoyin, additional, Li, Sizhao, additional, Liu, Zechao, additional, and Wang, Wenshan, additional
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- 2023
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36. QPause: Quantum-Resistant Password-Protected Data Outsourcing for Cloud Storage
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Jiang, Jingwei, primary, Wang, Ding, additional, and Zhang, Guoyin, additional
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- 2023
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37. Boat: Binary Optimizer with Adaptive Thresholds
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Gu, Shan, primary, Zhang, Guoyin, additional, Jia, Chengwei, additional, and Wu, Yanxia, additional
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- 2023
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38. Trajectory Data Publication Based on Differential Privacy
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Gu, Zhen, primary and Zhang, Guoyin, additional
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- 2022
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39. The JCMT BISTRO Survey: A Spiral Magnetic Field in a Hub-filament Structure, Monoceros R2
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Hwang, Jihye, primary, Kim, Jongsoo, additional, Pattle, Kate, additional, Lee, Chang Won, additional, Koch, Patrick M., additional, Johnstone, Doug, additional, Tomisaka, Kohji, additional, Whitworth, Anthony, additional, Furuya, Ray S., additional, Kang, Ji-hyun, additional, Lyo, A-Ran, additional, Chung, Eun Jung, additional, Arzoumanian, Doris, additional, Park, Geumsook, additional, Kwon, Woojin, additional, Kim, Shinyoung, additional, Tamura, Motohide, additional, Kwon, Jungmi, additional, Soam, Archana, additional, Han, Ilseung, additional, Hoang, Thiem, additional, Kim, Kyoung Hee, additional, Onaka, Takashi, additional, Eswaraiah, Chakali, additional, Ward-Thompson, Derek, additional, Liu, Hong-Li, additional, Tang, Xindi, additional, Chen, Wen Ping, additional, Matsumura, Masafumi, additional, Hoang, Thuong Duc, additional, Chen, Zhiwei, additional, Le Gouellec, Valentin J. M., additional, Kirchschlager, Florian, additional, Poidevin, Frédérick, additional, Bastien, Pierre, additional, Qiu, Keping, additional, Hasegawa, Tetsuo, additional, Lai, Shih-Ping, additional, Byun, Do-Young, additional, Cho, Jungyeon, additional, Choi, Minho, additional, Choi, Youngwoo, additional, Choi, Yunhee, additional, Jeong, Il-Gyo, additional, Kang, Miju, additional, Kim, Hyosung, additional, Kim, Kee-Tae, additional, Lee, Jeong-Eun, additional, Lee, Sang-Sung, additional, Lee, Yong-Hee, additional, Lee, Hyeseung, additional, Kim, Mi-Ryang, additional, Yoo, Hyunju, additional, Yun, Hyeong-Sik, additional, Chen, Mike, additional, Francesco, James Di, additional, Fiege, Jason, additional, Fissel, Laura M., additional, Franzmann, Erica, additional, Houde, Martin, additional, Lacaille, Kevin, additional, Matthews, Brenda, additional, Sadavoy, Sarah, additional, Moriarty-Schieven, Gerald, additional, Tahani, Mehrnoosh, additional, Ching, Tao-Chung, additional, Dai, Y. Sophia, additional, Duan, Yan, additional, Gu, Qilao, additional, Law, Chi-Yan, additional, Li, Dalei, additional, Li, Di, additional, Li, Guangxing, additional, Li, Hua-bai, additional, Liu, Tie, additional, Lu, Xing, additional, Qian, Lei, additional, Wang, Hongchi, additional, Wu, Jintai, additional, Xie, Jinjin, additional, Yuan, Jinghua, additional, Zhang, Chuan-Peng, additional, Zhang, Guoyin, additional, Zhang, Yapeng, additional, Zhou, Jianjun, additional, Zhu, Lei, additional, Berry, David, additional, Friberg, Per, additional, Graves, Sarah, additional, Liu, Junhao, additional, Mairs, Steve, additional, Parsons, Harriet, additional, Rawlings, Mark, additional, Doi, Yasuo, additional, Hayashi, Saeko, additional, Hull, Charles L. H., additional, Inoue, Tsuyoshi, additional, Inutsuka, Shu-ichiro, additional, Iwasaki, Kazunari, additional, Kataoka, Akimasa, additional, Kawabata, Koji, additional, Kim, Gwanjeong, additional, Kobayashi, Masato I. N., additional, Nagata, Tetsuya, additional, Nakamura, Fumitaka, additional, Nakanishi, Hiroyuki, additional, Pyo, Tae-Soo, additional, Saito, Hiro, additional, Seta, Masumichi, additional, Shimajiri, Yoshito, additional, Shinnaga, Hiroko, additional, Tsukamoto, Yusuke, additional, Zenko, Tetsuya, additional, Chen, Huei-Ru Vivien, additional, Duan, Hao-Yuan, additional, Fanciullo, Lapo, additional, Kemper, Francisca, additional, Lee, Chin-Fei, additional, Lin, Sheng-Jun, additional, Liu, Sheng-Yuan, additional, Ohashi, Nagayoshi, additional, Rao, Ramprasad, additional, Tang, Ya-Wen, additional, Wang, Jia-Wei, additional, Yang, Meng-Zhe, additional, Yen, Hsi-Wei, additional, Bourke, Tyler L., additional, Chrysostomou, Antonio, additional, Debattista, Victor, additional, Eden, David, additional, Eyres, Stewart, additional, Falle, Sam, additional, Fuller, Gary, additional, Gledhill, Tim, additional, Greaves, Jane, additional, Griffin, Matt, additional, Hatchell, Jennifer, additional, Karoly, Janik, additional, Kirk, Jason, additional, Könyves, Vera, additional, Longmore, Steven, additional, van Loo, Sven, additional, Looze, Ilse de, additional, Peretto, Nicolas, additional, Priestley, Felix, additional, Rawlings, Jonathan, additional, Retter, Brendan, additional, Richer, John, additional, Rigby, Andrew, additional, Savini, Giorgio, additional, Scaife, Anna, additional, Viti, Serena, additional, Diep, Pham Ngoc, additional, Ngoc, Nguyen Bich, additional, Tram, Le Ngoc, additional, André, Philippe, additional, Coudé, Simon, additional, Dowell, C. Darren, additional, Friesen, Rachel, additional, and Robitaille, Jean-Franćois, additional
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- 2022
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40. Effect of non-uniform heat flux on solar thermoelectric generator
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Ge, Minghui, primary, Xuan, Zhiwei, additional, Zhang, Guoyin, additional, Zhao, Yuntong, additional, and Zhao, Yulong, additional
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- 2022
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41. Experimental study of heat transfer characteristics and energy consumption of spray cooling
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Zhao, Yulong, primary, Gong, Siyuan, additional, Zhang, Guoyin, additional, Wang, Yulin, additional, and Ge, Minghui, additional
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- 2022
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42. The JCMT BISTRO-2 Survey: Magnetic Fields of the Massive DR21 Filament
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Ching, Tao-Chung, primary, Qiu, Keping, additional, Li, Di, additional, Ren, Zhiyuan, additional, Lai, Shih-Ping, additional, Berry, David, additional, Pattle, Kate, additional, Furuya, Ray, additional, Ward-Thompson, Derek, additional, Johnstone, Doug, additional, Koch, Patrick M., additional, Lee, Chang Won, additional, Hoang, Thiem, additional, Hasegawa, Tetsuo, additional, Kwon, Woojin, additional, Bastien, Pierre, additional, Eswaraiah, Chakali, additional, Wang, Jia-Wei, additional, Kim, Kyoung Hee, additional, Hwang, Jihye, additional, Soam, Archana, additional, Lyo, A-Ran, additional, Liu, Junhao, additional, Le Gouellec, Valentin J. M., additional, Arzoumanian, Doris, additional, Whitworth, Anthony, additional, Francesco, James Di, additional, Poidevin, Frédérick, additional, Liu, Tie, additional, Coudé, Simon, additional, Tahani, Mehrnoosh, additional, Liu, Hong-Li, additional, Onaka, Takashi, additional, Li, Dalei, additional, Tamura, Motohide, additional, Chen, Zhiwei, additional, Tang, Xindi, additional, Kirchschlager, Florian, additional, Bourke, Tyler L., additional, Byun, Do-Young, additional, Chen, Mike, additional, Chen, Huei-Ru Vivien, additional, Chen, Wen Ping, additional, Cho, Jungyeon, additional, Choi, Yunhee, additional, Choi, Youngwoo, additional, Choi, Minho, additional, Chrysostomou, Antonio, additional, Chung, Eun Jung, additional, Dai, Y. Sophia, additional, Diep, Pham Ngoc, additional, Doi, Yasuo, additional, Duan, Yan, additional, Duan, Hao-Yuan, additional, Eden, David, additional, Fanciullo, Lapo, additional, Fiege, Jason, additional, Fissel, Laura M., additional, Franzmann, Erica, additional, Friberg, Per, additional, Friesen, Rachel, additional, Fuller, Gary, additional, Gledhill, Tim, additional, Graves, Sarah, additional, Greaves, Jane, additional, Griffin, Matt, additional, Gu, Qilao, additional, Han, Ilseung, additional, Hayashi, Saeko, additional, Houde, Martin, additional, Hull, Charles L. H., additional, Inoue, Tsuyoshi, additional, Inutsuka, Shu-ichiro, additional, Iwasaki, Kazunari, additional, Jeong, Il-Gyo, additional, Könyves, Vera, additional, Kang, Ji-hyun, additional, Kang, Miju, additional, Karoly, Janik, additional, Kataoka, Akimasa, additional, Kawabata, Koji, additional, Kemper, Francisca, additional, Kim, Jongsoo, additional, Kim, Mi-Ryang, additional, Kim, Shinyoung, additional, Kim, Hyosung, additional, Kim, Kee-Tae, additional, Kim, Gwanjeong, additional, Kirk, Jason, additional, Kobayashi, Masato I. N., additional, Kusune, Takayoshi, additional, Kwon, Jungmi, additional, Lacaille, Kevin, additional, Law, Chi-Yan, additional, Lee, Sang-Sung, additional, Lee, Hyeseung, additional, Lee, Jeong-Eun, additional, Lee, Chin-Fei, additional, Lee, Yong-Hee, additional, Li, Guangxing, additional, Li, Hua-bai, additional, Lin, Sheng-Jun, additional, Liu, Sheng-Yuan, additional, Lu, Xing, additional, Mairs, Steve, additional, Matsumura, Masafumi, additional, Matthews, Brenda, additional, Moriarty-Schieven, Gerald, additional, Nagata, Tetsuya, additional, Nakamura, Fumitaka, additional, Nakanishi, Hiroyuki, additional, Ngoc, Nguyen Bich, additional, Ohashi, Nagayoshi, additional, Park, Geumsook, additional, Parsons, Harriet, additional, Peretto, Nicolas, additional, Priestley, Felix, additional, Pyo, Tae-Soo, additional, Qian, Lei, additional, Rao, Ramprasad, additional, Rawlings, Mark, additional, Rawlings, Jonathan, additional, Retter, Brendan, additional, Richer, John, additional, Rigby, Andrew, additional, Sadavoy, Sarah, additional, Saito, Hiro, additional, Savini, Giorgio, additional, Seta, Masumichi, additional, Shimajiri, Yoshito, additional, Shinnaga, Hiroko, additional, Tang, Ya-Wen, additional, Tomisaka, Kohji, additional, Tram, Le Ngoc, additional, Tsukamoto, Yusuke, additional, Viti, Serena, additional, Wang, Hongchi, additional, Wu, Jintai, additional, Xie, Jinjin, additional, Yang, Meng-Zhe, additional, Yen, Hsi-Wei, additional, Yoo, Hyunju, additional, Yuan, Jinghua, additional, Yun, Hyeong-Sik, additional, Zenko, Tetsuya, additional, Zhang, Chuan-Peng, additional, Zhang, Yapeng, additional, Zhang, Guoyin, additional, Zhou, Jianjun, additional, Zhu, Lei, additional, de Looze, Ilse, additional, André, Philippe, additional, Dowell, C. Darren, additional, Eyres, Stewart, additional, Falle, Sam, additional, Robitaille, Jean-François, additional, and van Loo, Sven, additional
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- 2022
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43. Performance study of air-type BIPVT coupled water-cooled wall
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Zhao, Yulong, primary, Diao, Hongmei, additional, Zhang, Guoyin, additional, and Ge, Minghui, additional
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- 2022
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44. The JCMT BISTRO Survey: The Magnetic Field of the Barnard 1 Star-Forming Region
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Coudé, Simon, Bastien, Pierre, Houde, Martin, Sadavoy, Sarah, Friesen, Rachel, Di Francesco, James, Johnstone, Doug, Mairs, Steve, Hasegawa, Tetsuo, Kwon, Woojin, Lai, Shih-Ping, Qiu, Keping, Ward-Thompson, Derek, Berry, David, Chen, Michael Chun-Yuan, Fiege, Jason, Franzmann, Erica, Hatchell, Jennifer, Lacaille, Kevin, Matthews, Brenda C., Moriarty-Schieven, Gerald H., Pon, Andy, André, Philippe, Arzoumanian, Doris, Aso, Yusuke, Byun, Do-Young, Chakali, Eswaraiah, Chen, Huei-Ru, Chen, Wen Ping, Ching, Tao-Chung, Cho, Jungyeon, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Doi, Yasuo, Drabek-Maunder, Emily, Dowell, C. Darren, Eyres, Stewart P. S., Falle, Sam, Friberg, Per, Fuller, Gary, Furuya, Ray S., Gledhill, Tim, Graves, Sarah F., Greaves, Jane S., Griffin, Matt J., Gu, Qilao, Hayashi, Saeko S., Hoang, Thiem, Holland, Wayne, Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Kanamori, Yoshihiro, Kataoka, Akimasa, Kang, Ji-hyun, Kang, Miju, Kang, Sung-ju, Kawabata, Koji S., Kemper, Francisca, Kim, Gwanjeong, Kim, Jongsoo, Kim, Kee-Tae, Kim, Kyoung Hee, Kim, Mi-Ryang, Kim, Shinyoung, Kirk, Jason M., Kobayashi, Masato I. N., Koch, Patrick M., Kwon, Jungmi, Lee, Jeong-Eun, Lee, Chang Won, Lee, Sang-Sung, Li, Dalei, Li, Di, Li, Hua-bai, Liu, Hong-Li, Liu, Junhao, Liu, Sheng-Yuan, Liu, Tie, van Loo, Sven, Lyo, A-Ran, Matsumura, Masafumi, Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ohashi, Nagayoshi, Onaka, Takashi, Parsons, Harriet, Pattle, Kate, Peretto, Nicolas, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Mark G., Retter, Brendan, Richer, John, Rigby, Andrew, Robitaille, Jean-François, Saito, Hiro, Savini, Giorgio, Scaife, Anna M. M., Seta, Masumichi, Shinnaga, Hiroko, Soam, Archana, Tamura, Motohide, Tang, Ya-Wen, Tomisaka, Kohji, Tsukamoto, Yusuke, Wang, Hongchi, Wang, Jia-Wei, Whitworth, Anthony P., Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Zenko, Tetsuya, Zhang, Chuan-Peng, Zhang, Guoyin, Zhou, Jianjun, and Zhu, Lei
- Subjects
Astrophysics - Astrophysics of Galaxies - Abstract
We present the POL-2 850 $\mu$m linear polarization map of the Barnard 1 clump in the Perseus molecular cloud complex from the B-fields In STar-forming Region Observations (BISTRO) survey at the James Clerk Maxwell Telescope. We find a trend of decreasing polarization fraction as a function of total intensity, which we link to depolarization effects towards higher density regions of the cloud. We then use the polarization data at 850 $\mu$m to infer the plane-of-sky orientation of the large-scale magnetic field in Barnard 1. This magnetic field runs North-South across most of the cloud, with the exception of B1-c where it turns more East-West. From the dispersion of polarization angles, we calculate a turbulence correlation length of $5.0 \pm 2.5$ arcsec ($1500$ au), and a turbulent-to-total magnetic energy ratio of $0.5 \pm 0.3$ inside the cloud. We combine this turbulent-to-total magnetic energy ratio with observations of NH$_3$ molecular lines from the Green Bank Ammonia Survey (GAS) to estimate the strength of the plane-of-sky component of the magnetic field through the Davis-Chandrasekhar-Fermi method. With a plane-of-sky amplitude of $120 \pm 60$ $\mu$G and a criticality criterion $\lambda_c = 3.0 \pm 1.5$, we find that Barnard 1 is a supercritical molecular cloud with a magnetic field nearly dominated by its turbulent component., Comment: 22 pages, 7 figures, accepted in the Astrophysical Journal
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- 2019
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45. The JCMT BISTRO Survey: The Magnetic Field In The Starless Core $\rho$ Ophiuchus C
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Liu, Junhao, Qiu, Keping, Berry, David, Di Francesco, James, Bastien, Pierre, Koch, Patrick M., Furuya, Ray S., Kim, Kee-Tae, Coudé, Simon, Lee, Chang Won, Soam, Archana, Eswaraiah, Chakali, Li, Di, Hwang, Jihye, Lyo, A-Ran, Pattle, Kate, Hasegawa, Tetsuo, Kwon, Woojin, Lai, Shih-Ping, Ward-Thompson, Derek, Ching, Tao-Chung, Chen, Zhiwei, Gu, Qilao, Li, Dalei, Li, Hua-bai, Liu, Hong-Li, Qian, Lei, Wang, Hongchi, Yuan, Jinghua, Zhang, Chuan-Peng, Zhang, Guoyin, Zhang, Ya-Peng, Zhou, Jianjun, Zhu, Lei, André, Philippe, Arzoumanian, Doris, Aso, Yusuke, Byun, Do-Young, Chen, Michael Chun-Yuan, Chen, Huei-Ru Vivien, Chen, Wen Ping, Cho, Jungyeon, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Doi, Yasuo, Drabek-Maunder, Emily, Dowell, C. Darren, Eyres, Stewart P. S., Falle, Sam, Fanciullo, Lapo, Fiege, Jason, Franzmann, Erica, Friberg, Per, Friesen, Rachel K., Fuller, Gary, Gledhill, Tim, Graves, Sarah F., Greaves, Jane S., Griffin, Matt J., Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko S., Hoang, Thiem, Holland, Wayne, Houde, Martin, Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Johnstone, Doug, Kanamori, Yoshihiro, Kang, Ji-hyun, Kang, Miju, Kang, Sung-ju, Kataoka, Akimasa, Kawabata, Koji S., Kemper, Francisca, Kim, Gwanjeong, Kim, Jongsoo, Kim, Kyoung Hee, Kim, Mi-Ryang, Kim, Shinyoung, Kirk, Jason M., Kobayashi, Masato I. N., Kusune, Takayoshi, Kwon, Jungmi, Lacaille, Kevin M., Lee, Chin-Fei, Lee, Jeong-Eun, Lee, Hyeseung, Lee, Sang-Sung, Liu, Sheng-Yuan, Liu, Tie, van Loo, Sven, Mairs, Steve, Matsumura, Masafumi, Matthews, Brenda C., Moriarty-Schieven, Gerald H., Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ohashi, Nagayoshi, Onaka, Takashi, Parker, Josh, Parsons, Harriet, Pascale, Enzo, Peretto, Nicolas, Pon, Andy, Pyo, Tae-Soo, Rao, Ramprasad, Rawlings, Mark G., Retter, Brendan, Richer, John, Rigby, Andrew, Robitaille, Jean-François, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Scaife, Anna M. M., Seta, Masumichi, Shinnaga, Hiroko, Tamura, Motohide, Tang, Ya-Wen, Tomisaka, Kohji, Tsukamoto, Yusuke, Wang, Jia-Wei, Whitworth, Anthony P., Yen, Hsi-Wei, Yoo, Hyunju, and Zenko, Tetsuya
- Subjects
Astrophysics - Astrophysics of Galaxies ,Astrophysics - Solar and Stellar Astrophysics - Abstract
We report 850~$\mu$m dust polarization observations of a low-mass ($\sim$12 $M_{\odot}$) starless core in the $\rho$ Ophiuchus cloud, Ophiuchus C, made with the POL-2 instrument on the James Clerk Maxwell Telescope (JCMT) as part of the JCMT B-fields In STar-forming Region Observations (BISTRO) survey. We detect an ordered magnetic field projected on the plane of sky in the starless core. The magnetic field across the $\sim$0.1~pc core shows a predominant northeast-southwest orientation centering between $\sim$40$^\circ$ to $\sim$100$^\circ$, indicating that the field in the core is well aligned with the magnetic field in lower-density regions of the cloud probed by near-infrared observations and also the cloud-scale magnetic field traced by Planck observations. The polarization percentage ($P$) decreases with an increasing total intensity ($I$) with a power-law index of $-$1.03 $\pm$ 0.05. We estimate the plane-of-sky field strength ($B_{\mathrm{pos}}$) using modified Davis-Chandrasekhar-Fermi (DCF) methods based on structure function (SF), auto-correlation (ACF), and unsharp masking (UM) analyses. We find that the estimates from the SF, ACF, and UM methods yield strengths of 103 $\pm$ 46 $\mu$G, 136 $\pm$ 69 $\mu$G, and 213 $\pm$ 115 $\mu$G, respectively. Our calculations suggest that the Ophiuchus C core is near magnetically critical or slightly magnetically supercritical (i.e. unstable to collapse). The total magnetic energy calculated from the SF method is comparable to the turbulent energy in Ophiuchus C, while the ACF method and the UM method only set upper limits for the total magnetic energy because of large uncertainties., Comment: 22 pages, 12 figures
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- 2019
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46. Underwater image enhancement using a mixed generative adversarial network
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Mu, Delang, primary, Li, Heng, additional, Liu, Hui, additional, Dong, Ling, additional, and Zhang, Guoyin, additional
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- 2022
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47. Near-bottom survey of hydrothermal sulfide on an extremely magmatic accretion segment along an ultraslow-spreading ridge
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Wu, Tao, primary, Tao, Chunhui, additional, Zhang, Jinhui, additional, Zhang, Guoyin, additional, Zhou, Jianping, additional, and Bin, Sui, additional
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- 2022
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48. JCMT BISTRO survey: Magnetic Fields within the Hub-Filament Structure in IC 5146
- Author
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Wang, Jia-Wei, Lai, Shih-Ping, Eswaraiah, Chakali, Pattle, Kate, Di Francesco, James, Johnstone, Doug, Koch, Patrick M., Liu, Tie, Tamura, Motohide, Furuya, Ray S., Onaka, Takashi, Ward-Thompson, Derek, Soam, Archana, Kim, Kee-Tae, Lee, Chang Won, Lee, Chin-Fei, Mairs, Steve, Arzoumanian, Doris, Kim, Gwanjeong, Hoang, Thiem, Hwang, Jihye, Liu, Sheng-Yuan, Berry, David, Bastien, Pierre, Hasegawa, Tetsuo, Kwon, Woojin, Qiu, Keping, André, Philippe, Aso, Yusuke, Byun, Do-Young, Chen, Huei-Ru, Chen, Michael C., Chen, Wen Ping, Ching, Tao-Chung, Cho, Jungyeon, Choi, Minho, Chrysostomou, Antonio, Chung, Eun Jung, Coudé, Simon, Doi, Yasuo, Dowell, C. Darren, Drabek-Maunder, Emily, Duan, Hao-Yuan, Eyres, Stewart P. S., Falle, Sam, Fanciullo, Lapo, Fiege, Jason, Franzmann, Erica, Friberg, Per, Friesen, Rachel K., Fuller, Gary, Gledhill, Tim, Graves, Sarah F., Greaves, Jane S., Griffin, Matt J., Gu, Qilao, Han, Ilseung, Hatchell, Jennifer, Hayashi, Saeko S., Holland, Wayne, Houde, Martin, Inoue, Tsuyoshi, Inutsuka, Shu-ichiro, Iwasaki, Kazunari, Jeong, Il-Gyo, Kanamori, Yoshihiro, Kang, Ji-hyun, Kang, Miju, Kang, Sung-ju, Kataoka, Akimasa, Kawabata, Koji S., Kemper, Francisca, Kim, Jongsoo, Kim, Kyoung Hee, Kim, Mi-Ryang, Kim, Shinyoung, Kirk, Jason M., Kobayashi, Masato I. N., Konyves, Vera, Kwon, Jungmi, Lacaille, Kevin M., Lee, Hyeseung, Lee, Jeong-Eun, Lee, Sang-Sung, Lee, Yong-Hee, Li, Dalei, Li, Di, Li, Hua-bai, Liu, Hong-Li, Liu, Junhao, Lyo, A-Ran, Matsumura, Masafumi, Matthews, Brenda C., Moriarty-Schieven, Gerald H., Nagata, Tetsuya, Nakamura, Fumitaka, Nakanishi, Hiroyuki, Ohashi, Nagayoshi, Park, Geumsook, Parsons, Harriet, Pascale, Enzo, Peretto, Nicolas, Pon, Andy, Pyo, Tae-Soo, Qian, Lei, Rao, Ramprasad, Rawlings, Mark G., Retter, Brendan, Richer, John, Rigby, Andrew, Robitaille, Jean-François, Sadavoy, Sarah, Saito, Hiro, Savini, Giorgio, Scaife, Anna M. M., Seta, Masumichi, Shinnaga, Hiroko, Tang, Ya-Wen, Tomisaka, Kohji, Tsukamoto, Yusuke, van Loo, Sven, Wang, Hongchi, Whitworth, Anthony P., Yen, Hsi-Wei, Yoo, Hyunju, Yuan, Jinghua, Yun, Hyeong-Sik, Zenko, Tetsuya, Zhang, Chuan-Peng, Zhang, Guoyin, Zhang, Ya-Peng, Zhou, Jianjun, and Zhu
- Subjects
Astrophysics - Astrophysics of Galaxies - Abstract
We present the 850 $\mu$m polarization observations toward the IC5146 filamentary cloud taken using the Submillimetre Common-User Bolometer Array 2 (SCUBA-2) and its associated polarimeter (POL-2), mounted on the James Clerk Maxwell Telescope (JCMT), as part of the B-fields In STar forming Regions Observations (BISTRO). This work is aimed at revealing the magnetic field morphology within a core-scale ($\lesssim 1.0$ pc) hub-filament structure (HFS) located at the end of a parsec-scale filament. To investigate whether or not the observed polarization traces the magnetic field in the HFS, we analyze the dependence between the observed polarization fraction and total intensity using a Bayesian approach with the polarization fraction described by the Rice likelihood function, which can correctly describe the probability density function (PDF) of the observed polarization fraction for low signal-to-noise ratio (SNR) data. We find a power-law dependence between the polarization fraction and total intensity with an index of 0.56 in $A_V\sim$ 20--300 mag regions, suggesting that the dust grains in these dense regions can still be aligned with magnetic fields in the IC5146 regions. Our polarization maps reveal a curved magnetic field, possibly dragged by the contraction along the parsec-scale filament. We further obtain a magnetic field strength of 0.5$\pm$0.2 mG toward the central hub using the Davis-Chandrasekhar-Fermi method, corresponding to a mass-to-flux criticality of $\sim$ $1.3\pm0.4$ and an Alfv\'{e}nic Mach number of $<$0.6. These results suggest that gravity and magnetic field is currently of comparable importance in the HFS, and turbulence is less important., Comment: 24 pages, 15 figures, accepted for publication in ApJ
- Published
- 2018
- Full Text
- View/download PDF
49. Quantum-Resistant Password-Based Threshold Single-Sign-On Authentication with Updatable Server Private Key
- Author
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Jiang, Jingwei, Wang, Ding, Zhang, Guoyin, Chen, Zhiyuan, Goos, Gerhard, Founding Editor, Hartmanis, Juris, Founding Editor, Bertino, Elisa, Editorial Board Member, Gao, Wen, Editorial Board Member, Steffen, Bernhard, Editorial Board Member, Yung, Moti, Editorial Board Member, Atluri, Vijayalakshmi, editor, Di Pietro, Roberto, editor, Jensen, Christian D., editor, and Meng, Weizhi, editor
- Published
- 2022
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50. A Novel Fragile Watermarking Scheme for 2D Vector Map Authentication
- Author
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Zhang, Guoyin, primary, Da, Qingan, additional, Zhang, Liguo, additional, Sun, Jianguo, additional, Han, Qilong, additional, Kou, Liang, additional, and Wang, WenShan, additional
- Published
- 2018
- Full Text
- View/download PDF
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