32 results on '"Martindale, Adrian"'
Search Results
2. STROBE-X: X-ray Timing and Spectroscopy on Dynamical Timescales from Microseconds to Years
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Ray, Paul S., Arzoumanian, Zaven, Ballantyne, David, Bozzo, Enrico, Brandt, Soren, Brenneman, Laura, Chakrabarty, Deepto, Christophersen, Marc, DeRosa, Alessandra, Feroci, Marco, Gendreau, Keith, Goldstein, Adam, Hartmann, Dieter, Hernanz, Margarita, Jenke, Peter, Kara, Erin, Maccarone, Tom, McDonald, Michael, Nowak, Michael, Phlips, Bernard, Remillard, Ron, Stevens, Abigail, Tomsick, John, Watts, Anna, Wilson-Hodge, Colleen, Wood, Kent, Zane, Silvia, Ajello, Marco, Alston, Will, Altamirano, Diego, Antoniou, Vallia, Arur, Kavitha, Ashton, Dominic, Auchettl, Katie, Ayres, Tom, Bachetti, Matteo, Balokovic, Mislav, Baring, Matthew, Baykal, Altan, Begelman, Mitch, Bhat, Narayana, Bogdanov, Slavko, Briggs, Michael, Bulbul, Esra, Bult, Petrus, Burns, Eric, Cackett, Ed, Campana, Riccardo, Caspi, Amir, Cavecchi, Yuri, Chenevez, Jerome, Cherry, Mike, Corbet, Robin, Corcoran, Michael, Corsi, Alessandra, Degenaar, Nathalie, Drake, Jeremy, Eikenberry, Steve, Enoto, Teruaki, Fragile, Chris, Fuerst, Felix, Gandhi, Poshak, Garcia, Javier, Gonzalez, Anthony, Grefenstette, Brian, Grinberg, Victoria, Grossan, Bruce, Guillot, Sebastien, Guver, Tolga, Haggard, Daryl, Heinke, Craig, Heinz, Sebastian, Hemphill, Paul, Homan, Jeroen, Hui, Michelle, Huppenkothen, Daniela, Ingram, Adam, Irwin, Jimmy, Jaisawal, Gaurava, Jaodand, Amruta, Kalemci, Emrah, Kaplan, David, Keek, Laurens, Kennea, Jamie, Kerr, Matthew, van der Klis, Michiel, Kocevski, Daniel, Koss, Mike, Kowalski, Adam, Lai, Dong, Lamb, Fred, Laycock, Silas, Lazio, Joseph, Lazzati, Davide, Longcope, Dana, Loewenstein, Michael, Maitra, Dipankair, Majid, Walid, Maksym, W. Peter, Malacaria, Christian, Margutti, Raffaella, Martindale, Adrian, McHardy, Ian, Meyer, Manuel, Middleton, Matt, Miller, Jon, Miller, Cole, Motta, Sara, Neilsen, Joey, Nelson, Tommy, Noble, Scott, O'Brien, Paul, Osborne, Julian, Osten, Rachel, Ozel, Feryal, Palliyaguru, Nipuni, Pasham, Dheeraj, Patruno, Alessandro, Pelassa, Vero, Petropoulou, Maria, Pilia, Maura, Pohl, Martin, Pooley, David, Prescod-Weinstein, Chanda, Psaltis, Dimitrios, Raaijmakers, Geert, Reynolds, Chris, Riley, Thomas E., Salvesen, Greg, Santangelo, Andrea, Scaringi, Simone, Schanne, Stephane, Schnittman, Jeremy, Smith, David, Smith, Krista Lynne, Snios, Bradford, Steiner, Andrew, Steiner, Jack, Stella, Luigi, Strohmayer, Tod, Sun, Ming, Tauris, Thomas, Taylor, Corbin, Tohuvavohu, Aaron, Vacchi, Andrea, Vasilopoulos, Georgios, Veledina, Alexandra, Walsh, Jonelle, Weinberg, Nevin, Wilkins, Dan, Willingale, Richard, Wilms, Joern, Winter, Lisa, Wolff, Michael, Zand, Jean in 't, Zezas, Andreas, Zhang, Bing, and Zoghbi, Abdu
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Astrophysics - Instrumentation and Methods for Astrophysics ,Astrophysics - High Energy Astrophysical Phenomena - Abstract
We present the Spectroscopic Time-Resolving Observatory for Broadband Energy X-rays (STROBE-X), a probe-class mission concept selected for study by NASA. It combines huge collecting area, high throughput, broad energy coverage, and excellent spectral and temporal resolution in a single facility. STROBE-X offers an enormous increase in sensitivity for X-ray spectral timing, extending these techniques to extragalactic targets for the first time. It is also an agile mission capable of rapid response to transient events, making it an essential X-ray partner facility in the era of time-domain, multi-wavelength, and multi-messenger astronomy. Optimized for study of the most extreme conditions found in the Universe, its key science objectives include: (1) Robustly measuring mass and spin and mapping inner accretion flows across the black hole mass spectrum, from compact stars to intermediate-mass objects to active galactic nuclei. (2) Mapping out the full mass-radius relation of neutron stars using an ensemble of nearly two dozen rotation-powered pulsars and accreting neutron stars, and hence measuring the equation of state for ultradense matter over a much wider range of densities than explored by NICER. (3) Identifying and studying X-ray counterparts (in the post-Swift era) for multiwavelength and multi-messenger transients in the dynamic sky through cross-correlation with gravitational wave interferometers, neutrino observatories, and high-cadence time-domain surveys in other electromagnetic bands. (4) Continuously surveying the dynamic X-ray sky with a large duty cycle and high time resolution to characterize the behavior of X-ray sources over an unprecedentedly vast range of time scales. STROBE-X's formidable capabilities will also enable a broad portfolio of additional science., Comment: 50 pages, Probe class mission concept study report submitted to NASA for Astro2020 Decadal Survey
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- 2019
3. The enhanced X-ray Timing and Polarimetry mission - eXTP
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Zhang, ShuangNan, Santangelo, Andrea, Feroci, Marco, Xu, YuPeng, Lu, FangJun, Chen, Yong, Feng, Hua, Zhang, Shu, Brandt, Søren, Hernanz, Margarita, Baldini, Luca, Bozzo, Enrico, Campana, Riccardo, De Rosa, Alessandra, Dong, YongWei, Evangelista, Yuri, Karas, Vladimir, Meidinger, Norbert, Meuris, Aline, Nandra, Kirpal, Pan, Teng, Pareschi, Giovanni, Orleanski, Piotr, Huang, QiuShi, Schanne, Stephane, Sironi, Giorgia, Spiga, Daniele, Svoboda, Jiri, Tagliaferri, Gianpiero, Tenzer, Christoph, Vacchi, Andrea, Zane, Silvia, Walton, Dave, Wang, ZhanShan, Winter, Berend, Wu, Xin, Zand, Jean J. M. in 't, Ahangarianabhari, Mahdi, Ambrosi, Giovanni, Ambrosino, Filippo, Barbera, Marco, Basso, Stefano, Bayer, Jörg, Bellazzini, Ronaldo, Bellutti, Pierluigi, Bertucci, Bruna, Bertuccio, Giuseppe, Borghi, Giacomo, Cao, XueLei, Cadoux, Franck, Ceraudo, Francesco, Chen, TianXiang, Chen, YuPeng, Chevenez, Jerome, Civitani, Marta, Cui, Wei, Cui, WeiWei, Dauser, Thomas, Del Monte, Ettore, Di Cosimo, Sergio, Diebold, Sebastian, Doroshenko, Victor, Dovciak, Michal, Du, YuanYuan, Ducci, Lorenzo, Fan, QingMei, Favre, Yannick, Fuschino, Fabio, Gálvez, José Luis, Gao, Min, Ge, MingYu, Gevin, Olivier, Grassi, Marco, Gu, QuanYing, Gu, YuDong, Han, DaWei, Hong, Bin, Hu, Wei, Ji, Long, Jia, ShuMei, Jiang, WeiChun, Kennedy, Thomas, Kreykenbohm, Ingo, Kuvvetli, Irfan, Labanti, Claudio, Latronico, Luca, Li, Gang, Li, MaoShun, Li, Xian, Li, Wei, Li, ZhengWei, Limousin, Olivier, Liu, HongWei, Liu, XiaoJing, Lu, Bo, Luo, Tao, Macera, Daniele, Malcovati, Piero, Martindale, Adrian, Michalska, Malgorzata, Meng, Bin, Minuti, Massimo, Morbidini, Alfredo, Muleri, Fabio, Paltani, Stephane, Perinati, Emanuele, Picciotto, Antonino, Piemonte, Claudio, Qu, JinLu, Rachevski, Alexandre, Rashevskaya, Irina, Rodriguez, Jerome, Schanz, Thomas, Shen, ZhengXiang, Sheng, LiZhi, Song, JiangBo, Song, LiMing, Sgro, Carmelo, Sun, Liang, Tan, Ying, Uttley, Phil, Wang, Juan, Wang, LangPing, Wang, YuSa, Watts, Anna L., Wen, XiangYang, Wilms, Jörn, Xiong, ShaoLin, Yang, JiaWei, Yang, Sheng, Yang, YanJi, Yu, Nian, Zhang, WenDa, Zampa, Gianluigi, Zampa, Nicola, Zdziarski, Andrzej A., Zhang, AiMei, Zhang, ChengMo, Zhang, Fan, Zhang, Long, Zhang, Tong, Zhang, Yi, Zhang, XiaoLi, Zhang, ZiLiang, Zhao, BaoSheng, Zheng, ShiJie, Zhou, YuPeng, Zorzi, Nicola, and Zwart, J. Frans
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Astrophysics - Instrumentation and Methods for Astrophysics ,Astrophysics - High Energy Astrophysical Phenomena - Abstract
In this paper we present the enhanced X-ray Timing and Polarimetry mission - eXTP. eXTP is a space science mission designed to study fundamental physics under extreme conditions of density, gravity and magnetism. The mission aims at determining the equation of state of matter at supra-nuclear density, measuring effects of QED, and understanding the dynamics of matter in strong-field gravity. In addition to investigating fundamental physics, eXTP will be a very powerful observatory for astrophysics that will provide observations of unprecedented quality on a variety of galactic and extragalactic objects. In particular, its wide field monitoring capabilities will be highly instrumental to detect the electro-magnetic counterparts of gravitational wave sources. The paper provides a detailed description of: (1) the technological and technical aspects, and the expected performance of the instruments of the scientific payload; (2) the elements and functions of the mission, from the spacecraft to the ground segment., Comment: Accepted for publication on Sci. China Phys. Mech. Astron. (2019)
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- 2018
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4. The Large Area Detector onboard the eXTP mission
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Feroci, Marco, Ahangarianabhari, Mahdi, Ambrosi, Giovanni, Ambrosino, Filippo, Argan, Andrea, Barbera, Marco, Bayer, Joerg, Bellutti, Pierluigi, Bertucci, Bruna, Bertuccio, Giuseppe, Borghi, Giacomo, Bozzo, Enrico, Cadoux, Franck, Campana, Riccardo, Ceraudo, Francesco, Chen, Tianxiang, Cirrincione, Daniela, De Rosa, Alessandra, Del Monte, Ettore, Di Cosimo, Sergio, Diebold, Sebastian, Evangelista, Yuri, Fan, Qingmei, Favre, Yannick, Ficorella, Francesco, Fuschino, Fabio, Gevin, Olivier, Grassi, Marco, Hong, Bin, Mao, Hanqi, Karas, Vladimir, Kennedy, Tom, Labanti, Claudio, Limousin, Olivier, Cicero, Ugo Lo, Lu, Fang-Jun, Luo, Tao, Malcovati, Piero, Martindale, Adrian, Meuris, Aline, Michalska, Malgorzata, Morbidini, Alfredo, Muleri, Fabio, Orleanski, Piotr, Paltani, Stephane, Pan, Teng, Perinati, Emanuele, Picciotto, Antonino, Pohl, Martin, Rashevskaia, Irina, Santangelo, Andrea, Schanne, Stephane, Skup, Konrad, Svoboda, Jiri, Tenzer, Chris, Vacchi, Andrea, Walton, Dave, Winter, Berend, Wu, Xin, Xu, Yupeng, Zampa, Ganluigi, Zampa, Nicola, Zane, Silvia, Zdziarski, Andrzej, Zhang, Long, Zhang, Shu, Zhang, Shuang-Nan, Zhang, Wenda, Zhang, Xiaoli, Zhou, Yupeng, and Zorzi, Nicola
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Astrophysics - Instrumentation and Methods for Astrophysics - Abstract
The eXTP (enhanced X-ray Timing and Polarimetry) mission is a major project of the Chinese Academy of Sciences (CAS) and China National Space Administration (CNSA) currently performing an extended phase A study and proposed for a launch by 2025 in a low-earth orbit. The eXTP scientific payload envisages a suite of instruments (Spectroscopy Focusing Array, Polarimetry Focusing Array, Large Area Detector and Wide Field Monitor) offering unprecedented simultaneous wide-band X-ray spectral, timing and polarimetry sensitivity. A large European consortium is contributing to the eXTP study and it is expected to provide key hardware elements, including a Large Area Detector (LAD). The LAD instrument for eXTP is based on the design originally proposed for the LOFT mission within the ESA context. The eXTP/LAD envisages a deployed 3.4 m2 effective area in the 2-30 keV energy range, achieved through the technology of the large-area Silicon Drift Detectors - offering a spectral resolution of up to 200 eV FWHM at 6 keV - and of capillary plate collimators - limiting the field of view to about 1 degree. In this paper we provide an overview of the LAD instrument design, including new elements with respect to the earlier LOFT configuration., Comment: Paper presented at SPIE Space Telescopes and Instrumentation 2018
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- 2018
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5. Feasibility and performance assessment of a practical autonomous deep space navigation system based on X-ray pulsar timing
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Shemar, Setnam, Fraser, George, Heil, Lucy, Hindley, David, Martindale, Adrian, Molyneux, Philippa, Pye, John, and Warwick, Robert
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Astrophysics - Instrumentation and Methods for Astrophysics ,Astrophysics - High Energy Astrophysical Phenomena - Abstract
Shemar et al. (2016) presented results based on the output of a feasibility study for the European Space Agency (ESA) on the use of X-ray pulsars for deep space navigation, a concept often referred to as 'XNAV'. Here we describe some of the key results as well as providing additional information which includes navigation uncertainties and the potential X-ray technology that could be used. For a conventional deep space mission, an X-ray navigation system must be practical to implement as a spacecraft subsystem and to this end it must meet restrictive mass, volume and power consumption requirements. The implementation of an X-ray observatory sized instrument is unrealistic in this case. The Mercury Imaging X-ray Spectrometer (MIXS) instrument, due to be launched on the ESA/JAXA BepiColombo mission to Mercury in 2018, is an example of an instrument that may be further developed as a practical telescope for XNAV. Simulations involving different pulsar combinations and navigation strategies are used to estimate the navigation uncertainties that may be achievable using such an instrument. Possible options for future developments in terms of simpler, lower-cost Kirkpatrick-Baez optics are discussed, in addition to the principal design and development challenges that must be addressed in order to realise an operational XNAV system., Comment: 28 pages, 3 figures, to appear in Proceedings of the 593. WE-Heraeus Seminar on Autonomous Spacecraft Navigation, ed. W. Becker
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- 2018
6. Capabilities of a lobster eye telescope in the outer solar system
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Feldman, Charlotte, primary, Dunn, William, additional, Lindsay, Simon, additional, and Martindale, Adrian, additional
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- 2023
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7. Exploring Fundamental Particle Acceleration and Loss Processes in Heliophysics through an Orbiting X-ray Instrument in the Jovian System
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Dunn, William, primary, Berland, Grant, additional, Roussos, Elias, additional, Clark, George, additional, Kollmann, Peter, additional, Turner, Drew, additional, Feldman, Charly, additional, Stallard, Tom, additional, Branduardi-Raymont, Graziella, additional, Woodfield, Emma, additional, Rae, I. Jonathan, additional, Ray, Licia, additional, Carter, Jenny, additional, Lindsay, Simon, additional, Yao, Zhonghua, additional, Marshall, Robert, additional, Jaynes, Allison, additional, Ezoe, Yuichiro, additional, Numazawa, Masaki, additional, Hospodarsky, George, additional, Wu, Xin, additional, Weigt, Dale, additional, Jackman, Caitriona, additional, Mori, Kaya, additional, Nenon, Quentin, additional, Desai, Ravindra, additional, Blum, Lauren, additional, Nordheim, Tom, additional, Ness, Jan-Uwe, additional, Bodewits, Dennis, additional, Kimura, Tomoki, additional, Li, Wen, additional, Smith, H. Todd, additional, Millas, Dimitrios, additional, Wibisono, Affelia, additional, Achilleos, Nick, additional, Koutroumpa, Dimitra, additional, McEntee, Sean, additional, Collier, Hannah, additional, Bhardwaj, Anil, additional, Martindale, Adrian, additional, Wolk, Scott, additional, Badman, Sarah, additional, and Kraft, Ralph, additional
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- 2023
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8. The BepiColombo Mercury Imaging X-Ray Spectrometer: Science Goals, Instrument Performance and Operations
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Bunce, Emma J., Martindale, Adrian, Lindsay, Simon, Muinonen, Karri, Rothery, David A., Pearson, Jim, McDonnell, Ivor, Thomas, Chris, Thornhill, Julian, Tikkanen, Tuomo, Feldman, Charly, Huovelin, Juhani, Korpela, Seppo, Esko, Eero, Lehtolainen, Arto, Treis, Johannes, Majewski, Petra, Hilchenbach, Martin, Väisänen, Timo, Luttinen, Arto, Kohout, Tomas, Penttilä, Antti, Bridges, John, Joy, Katherine H., Alcacera-Gil, Maria Angeles, Alibert, Guilhem, Anand, Mahesh, Bannister, Nigel, Barcelo-Garcia, Corinne, Bicknell, Chris, Blake, Oliver, Bland, Phil, Butcher, Gillian, Cheney, Andy, Christensen, Ulrich, Crawford, Tony, Crawford, Ian A., Dennerl, Konrad, Dougherty, Michele, Drumm, Paul, Fairbend, Raymond, Genzer, Maria, Grande, Manuel, Hall, Graeme P., Hodnett, Rosie, Houghton, Paul, Imber, Suzanne, Kallio, Esa, Lara, Maria Luisa, Balado Margeli, Ana, Mas-Hesse, Miguel J., Maurice, Sylvestre, Milan, Steve, Millington-Hotze, Peter, Nenonen, Seppo, Nittler, Larry, Okada, Tatsuaki, Ormö, Jens, Perez-Mercader, Juan, Poyner, Richard, Robert, Eddy, Ross, Duncan, Pajas-Sanz, Miriam, Schyns, Emile, Seguy, Julien, Strüder, Lothar, Vaudon, Nathalie, Viceira-Martín, Jose, Williams, Hugo, Willingale, Dick, and Yeoman, Tim
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- 2020
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9. Novel X-ray instrumentation for astronomy
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Martindale, Adrian
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520 - Abstract
This thesis describes experimental and theoretical work and technology development directed towards the next generation of X-ray astronomical instrumentation. A great heritage exists of instruments which are sensitive to X-rays which operate on board space based observatories. The next generation of such telescopes will take advantage of the rapid technology advancement of the last four decades of more accurately observe the universe and give greater insight into the objects within it, how they formed and how they will evolve. Chapters 2 and 3 describe the investigation of extremely high speed microchannel plate detectors capable of counting individual photons with a timing accuracy of a few tens of picoseconds (1 ps = 10-12s)at extremely high spatial resolution. Although many early X-ray astronomical instruments were based on MCP detectors, it is only recent manufacturing improvements which have enabled the production of such small pore diameters, enabling the unparalleled temporal and spatial resolution. Prospects for future application exist in fields as diverse as X-ray and ultraviolet astronomy and the life sciences. Chapters 4 and 5 report the testing of Microchannel plates as low mass X-ray optics where the development of square pore geometrics has made true imaging MCP telescopes possible. Two flight programs are identified as areas where such optics will provide tangible benefits: These are BepiColombo, a European mission to the planet Mercury which will contain the first ever imaging X-raytelescope on a planetary science mission and Lobster-ISS, a wide field of view telescope for X-ray astronomy which will provide coverage of, almost, the whole sky every 90 minute orbit. Testing reported herein finds that the manufacturing techniques are maturing to a point where they can exceed the <5 arcmin resolution required for these missions. Chapters 6 and 7 comprise a description of a completely novel X-ray polarimeter. For the past three decades, little or now progress has been made in the field of X-ray astrophysical polarimetry owing to the lack of suitable instrumentation, this is despite intense scientific interest in such measurements. A simple optical design for a polarimeter is made possible using highly ordered materials which exhibit dichroism at fixed, narrow energy bands, for the first time allowing simultaneous measurement of ALL astronomically pertinent observables. The areas of science influenced by these three areas of instrument development are shown to be very broad, including; astrophysics and cosmology, planetary science, life sciences, nano-science and even fundamental chemistry.
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- 2008
10. Rationale for BepiColombo Studies of Mercury’s Surface and Composition
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Rothery, David A., Massironi, Matteo, Alemanno, Giulia, Barraud, Océane, Besse, Sebastien, Bott, Nicolas, Brunetto, Rosario, Bunce, Emma, Byrne, Paul, Capaccioni, Fabrizio, Capria, Maria Teresa, Carli, Cristian, Charlier, Bernard, Cornet, Thomas, Cremonese, Gabriele, D’Amore, Mario, De Sanctis, M. Cristina, Doressoundiram, Alain, Ferranti, Luigi, Filacchione, Gianrico, Galluzzi, Valentina, Giacomini, Lorenza, Grande, Manuel, Guzzetta, Laura G., Helbert, Jörn, Heyner, Daniel, Hiesinger, Harald, Hussmann, Hauke, Hyodo, Ryuku, Kohout, Tomas, Kozyrev, Alexander, Litvak, Maxim, Lucchetti, Alice, Malakhov, Alexey, Malliband, Christopher, Mancinelli, Paolo, Martikainen, Julia, Martindale, Adrian, Maturilli, Alessandro, Milillo, Anna, Mitrofanov, Igor, Mokrousov, Maxim, Morlok, Andreas, Muinonen, Karri, Namur, Olivier, Owens, Alan, Nittler, Larry R., Oliveira, Joana S., Palumbo, Pasquale, Pajola, Maurizio, Pegg, David L., Penttilä, Antti, Politi, Romolo, Quarati, Francesco, Re, Cristina, Sanin, Anton, Schulz, Rita, Stangarone, Claudia, Stojic, Aleksandra, Tretiyakov, Vladislav, Väisänen, Timo, Varatharajan, Indhu, Weber, Iris, Wright, Jack, Wurz, Peter, and Zambon, Francesca
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- 2020
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11. Towards practical autonomous deep-space navigation using X-Ray pulsar timing
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Shemar, Setnam, Fraser, George, Heil, Lucy, Hindley, David, Martindale, Adrian, Molyneux, Philippa, Pye, John, Warwick, Robert, and Lamb, Andrew
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- 2016
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12. The enhanced x-ray timing and polarimetry mission: eXTP: an update on its scientific cases, mission profile and development status
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Zhang, Shuang Nan, Santangelo, Andrea, Xu, Yupeng, Feroci, Marco, Hernanz, Margarita, Lu, Fangjun, Chen, Yong, Feng, Hua, Nandra, Kirpal, Jiang, Weichun, Svoboda, Jiri, Brandt, Søren, Schanne, Stéphane, Zand, Jean, Michalska, Malgorzata, Bozzo, Enrico, Kalemci, Emrah, Agudo, Ivan, Ahangarianabhari, Mahdi, Aitink-Kroes, Gabby, Ambrosi, Giovanni, Ambrosino, Filippo, An, Zhenghua, Perez Torres, Miguel Angel, Antonelli, Matias, Argan, Andrea, Babinec, Viktor, Baldini, Luca, Barbera, Marco, van Baren, Coen, Baudin, David, Bayer, Jörg, Bellazzini, Ronaldo, Bellutti, Pierluigi, Bertucci, Bruna, Bertuccio, Giuseppe, Bi, Xingzi, Boezio, Mirko, Bonvicini, Valter, Bonvicini, Walter, Bordas, Pol, Borghese, Alice, Borghi, Giacomo, Bouyjou, Florent, Bozkurt, Ayhan, Brez, Alessandro, Brienza, Daniele, Cadoux, Franck, Campana, Riccardo, Cao, Jiewei, Cao, Xuelei, Casares, Jorge, Cavazzuti, Elisabetta, Ceraudo, Francesco, Chen, Tianxiang, Chen, Wen, Chen, Can, Chen, Yupeng, Chen, Xin, Chen, Yehai, Chenevez, Jerome, Cheng, Yaodong, Cirrincione, Daniela, Civitani, Marta, Cong, Min, Zelati, Francesco Coti, Cui, Weiwei, Cui, Tao, Cui, Wei, Dai, Boyu, Dauser, Thomas, De Angelis, Nicolas, De Marco, Barbara, De Rosa, Alessandra, Monte, Ettore Del, Cosimo, Sergio Di, Diebold, Sebastian, Dilillo, Giuseppe, Ding, Fei, Dohnal, Roman, Dong, Zefang, Donnarumma, Immacolata, Dovciak, Michal, Du, Yuanyuan, Ducci, Lorenzo, Evangelista, Yuri, Fan, Qingmei, Favre, Yannick, Ferrés, Patrícia, Fiandrini, Emanuele, Ficorella, Francesco, Fuschino, Fabio, Gálvez, José Luis, Gao, Na, Gao, Min, Ge, Yuqiang, Ge, Mingyu, Gevin, Olivier, Grassi, Marco, Gu, Yudong, Gu, Quanying, Guan, Ju, Guedel, Manuel, Han, Xingbo, Han, Dawei, He, Huilin, He, Junwang, Hedderman, Paul, den Herder, Jan Willem, Hong, Bin, Hormaetxe, Ander, Hou, Dongjie, Hu, Zexun, Hu, Hao, Hu, Qingbao, Hu, Yu, Huang, Yue, Huang, Jiangjiang, Huang, Qiushi, Huo, Jia, Hynek, Richard, Iwasawa, Kazumi, Izzo, Lucca, Ji, Long, Jia, Shumei, Jiang, Bowen, Jiang, Wei, Jiang, Jiechen, Jiang, Xiaowei, Jiao, Yang, Jin, Ge, Jin, Fan, Jose, Jordi, Karas, Vladimir, Kennedy, Thomas, Kirsch, Christian, Kole, Merlin, Komarek, Martin, Kreykenbohm, Ingo, Kuiper, Lucien, Kuvvetli, Irfan, Labanti, Claudio, Latronico, Luca, Laubert, Phillip, Li, Tao, Li, Longhui, Li, Hong, Li, Duo, Li, Wei, Li, Maoshun, Li, Gang, Li, Xiaobo, Li, Chengkui, Li, Bing, Li, Haibo, Liang, Hong, Liao, Qiuyan, Liao, Jinyuan, Limousin, Olivier, Lin, Yanjian, Linares, Manuel, Liu, Rui, Liu, Yichen, Liu, Zhihao, Liu, Hongwei, Liu, Xiaojing, Liu, Xiaohua, Cicero, Ugo Lo, Loehring, Jens, Lombardi, Giovanni, Lorenz, Maximilian, Lu, Bing, Lucchesi, Leonardo, Luo, Tao, Luo, Laidan, Ma, Jia, Ma, Xiang, Macera, Daniele, Malcovati, Piero, Manfreda, Alberto, Paredes, Josep Maria, Marinucci, Andrea, Martindale, Adrian, Meidinger, Norbert, Mele, Filippo, Mendes, Vasco, Meng, Bin, Merkl, Martin, Meuris, Aline, Miniutti, Giovanni, Minuti, Massimo, Morbidini, Alfredo, Morgante, Gianluca, Muleri, Fabio, Munini, Riccardo, Mussolin, Lorenzo, Negri, Barbara, Nie, Jianyin, Novák, Petr, Nowosielski, Witold, Nuti, Alessio, Onat, Ahmet, Orleanski, Piotr, Orsini, Leonardo, Ottensamer, Roland, Ou, Ge, Pacciani, Luigi, Paltani, Stephane, Pan, Teng, Pan, Kai, Pareschi, Giovanni, Patruno, Alessandro, Pepponi, Giancarlo, Perinati, Emanuele, Piazzolla, Raffaele, Picciotto, Antonino, Piemonte, Claudio, Pinchera, Michele, Pliego, Samuel, Poutanen, Juri, Qi, Liqiang, Qi, Fazhi, Qiang, Pengfei, Qiao, Fangjian, Qiao, Zheng, Qiu, Xiangbiao, Qiu, Chengbo, Qu, Jinlu, Rachevski, Alexandre, Rashevskaia, Irina, Rea, Nanda, Ribo, Marc, de la Rie, Rob, Rodriguez, Jerome, Gil, Pablo Rodríguez, Sala, Gloria, Schanz, Thomas, Serafinelli, Roberto, Sgro, Carmelo, Shen, Zhengxiang, Sheng, Lizhi, Shi, Jingyan, Sironi, Giorgia, Skup, Konrad, Song, Liming, Song, Zeyu, Song, Jiangbo, Spandre, Gloria, Spiga, Daniele, Su, Yongquan, Sun, Liang, Sungur, Müberra, Svéda, Libor, Tagliaferri, Gianpiero, Tan, Ying, Tao, Lian, Tcherniak, Denis, Tenzer, Chris, Todaro, Michela, Tolos, Laura, Torok, Gabriel, Torres, Diego F., Trois, Alessio, Turhan, Onur, Uttley, Phil, Vacchi, Andrea, Virgilli, Enrico, Vogel, Channah, Walton, Dave, Wang, Jian, Wang, Xianqi, Wang, Bo, Wang, Langping, Wang, Xiaofeng, Wang, Dianlong, Wang, Yusa, Wang, Juan, Wang, Hao, Wang, Ruijie, Wang, Ping, Wang, Lingjun, Wang, Wenshuai, Wang, Tian, Wang, Haoyu, Wang, Zhanshan, Watts, Anna L., Wen, Xiangyang, Wilms, Jörn, Winter, Berend, Wu, Xin, Wu, Chao, Wu, Zhenyu, Wu, Qiong, Wu, Kaiji, Xiong, Hao, Xiong, Shaolin, Xu, Wei, Xu, Zhao, Xu, Jingjing, Xu, Xiongwei, Xue, Jiadai, Yan, Yongqing, Yan, Xingtao, Yang, Xianghui, Yang, Yanji, Yang, Xiongtao, Yang, Sheng, Yang, Jiawei, Yang, Yingquan, Yi, Shuxu, Yu, Yonggao, Yu, Ke, Zampa, Ganluigi, Zampa, Nicola, Zane, Silvia, Zdziarski, Andrzej A., Zhang, Long, Zhang, Shu, Zhang, Wenda, Zhang, Xiaoli, Zhang, Zhen, Zhang, Jiawei, Zhang, Fan, Zhang, Ziliang, Zhang, Dali, Zhang, Honglin, Zhang, Aimei, Zhang, Tong, Zhang, Hongmei, Zhang, Juan, Zhang, Liang, Zhang, Yueting, Zhao, Li, Zhao, Baosheng, Zhao, Zijian, Zhao, Xiaofan, Zhao, Haisheng, Zhao, Xiaoyun, Zheng, Shijie, Zhou, Yupeng, Zhou, Xiaohong, Zhu, Jiahuan, Zhu, Yuxuan, Zhu, Cheng, Zhu, Zhencai, Zorzi, Nicola, Zwart, Frans, den Herder, Jan-Willem A., Nikzad, Shouleh, Nakazawa, Kazuhiro, Chinese Academy of Sciences, Agenzia Spaziale Italiana, Ministerio de Ciencia e Innovación (España), Federal Ministry of Economics and Technology (Germany), and Foundation for Polish Science
- Subjects
Equation of state ,Extreme gravity ,Black hole ,X-ray timing ,X-ray polarimetry ,Neutron star ,Extreme magnetism ,Extreme density - Abstract
Space Telescopes and Instrumentation 2022: Ultraviolet to Gamma Ray (2022), Montreal, Jul 17-22, 2022.--Proceedings of SPIE - The International Society for Optical Engineering vol. 12181 Article number 121811W.-- Full list of authors: Zhang, Shuang-Nan; Santangelo, Andrea; Xu, Yupeng; Feroci, Marco; Hernanz, Margarita; Lu, Fangjun; Chen, Yong; Feng, Hua; Nandra, Kirpal; Jiang, Weichun; Svoboda, Jiri; Brandt, Soren; Schanne, Stephane; in't Zand, Jean; Michalska, Malgorzata; Bozzo, Enrico; Kalemci, Emrah; Agudo, Ivan; Ahangarianabhari, Mahdi; Aitink-Kroes, Gabby; Ambrosi, Giovanni; Ambrosino, Filippo; An, Zhenghua; Perez Torres, Miguel Angel; Antonelli, Matias; Argan, Andrea; Babinec, Viktor; Baldini, Luca; Barbera, Marco; van Baren, Coen; Baudin, David; Bayer, Joerg; Bellazzini, Ronaldo; Bellutti, Pierluigi; Bertucci, Bruna; Bertuccio, Giuseppe; Bi, Xingzi; Boezio, Mirko; Bonvicini, Valter; Bonvicini, Walter; Bordas, Pol; Borghese, Alice; Borghi, Giacomo; Bouyjou, Florent; Bozkurt, Ayhan; Brez, Alessandro; Brienza, Daniele; Cadoux, Franck; Campana, Riccardo; Cao, Jiewei; Cao, Xuelei; Casares, Jorge; Cavazzuti, Elisabetta; Ceraudo, Francesco; Chen, Tianxiang; Chen, Wen; Chen, Can; Chen, Yupeng; Chen, Xin; Chen, Yehai; Chenevez, Jerome; Cheng, Yaodong; Cirrincione, Daniela; Civitani, Marta; Cong, Min; Coti Zelati, Francesco; Cui, Weiwei; Cui, Tao; Cui, Wei; Dai, Boyu; Dauser, Thomas; De Angelis, Nicolas; De Marco, Barbara; De Rosa, Alessandra; Del Monte, Ettore; Di Cosimo, Sergio; Diebold, Sebastian; Dilillo, Giuseppe; Ding, Fei; Dohnal, Roman; Dong, Zefang; Donnarumma, Immacolata; Dovciak, Michal; Du, Yuanyuan; Ducci, Lorenzo; Evangelista, Yuri; Fan, Qingmei; Favre, Yannick; Ferres, Patricia; Fiandrini, Emanuele; Ficorella, Francesco; Fuschino, Fabio; Luis Galvez, Jose; Gao, Na; Gao, Min; Ge, Yuqiang; Ge, Mingyu; Gevin, Olivier; Grassi, Marco; Gu, Yudong; Gu, Quanying; Guan, Ju; Guedel, Manuel; Han, Xingbo; Han, Dawei; He, Huilin; He, Junwang; Hedderman, Paul; den Herder, Jan-Willem; Hong, Bin; Hormaetxe, Ander; Hou, Dongjie; Hu, Zexun; Hu, Hao; Hu, Qingbao; Hu, Yu; Huang, Yue; Huang, Jiangjiang; Huang, Qiushi; Huo, Jia; Hynek, Richard; Iwasawa, Kazumi; Izzo, Lucca; Ji, Long; Jia, Shumei; Jiang, Bowen; Jiang, Wei; Jiang, Jiechen; Jiang, Xiaowei; Jiao, Yang; Jin, Ge; Jin, Fan; Jose, Jordi; Karas, Vladimir; Kennedy, Thomas; Kirsch, Christian; Kole, Merlin; Komarek, Martin; Kreykenbohm, Ingo; Kuiper, Lucien; Kuvvetli, Irfan; Labanti, Claudio; Latronico, Luca; Laubert, Phillip; Li, Tao; Li, Longhui; Li, Hong; Li, Duo; Li, Wei; Li, Maoshun; Li, Gang; Li, Xiaobo; Li, Chengkui; Li, Bing; Li, Haibo; Liang, Hong; Liao, Qiuyan; Liao, Jinyuan; Limousin, Olivier; Lin, Yanjian; Linares, Manuel; Liu, Rui; Liu, Yichen; Liu, Zhihao; Liu, Hongwei; Liu, Xiaojing; Liu, Xiaohua; Lo Cicero, Ugo; Loehring, Jens; Lombardi, Giovanni; Lorenz, Maximilian; Lu, Bing; Lucchesi, Leonardo; Luo, Tao; Luo, Laidan; Ma, Jia; Ma, Xiang; Macera, Daniele; Malcovati, Piero; Manfreda, Alberto; Maria Paredes, Josep; Marinucci, Andrea; Martindale, Adrian; Meidinger, Norbert; Mele, Filippo; Mendes, Vasco; Meng, Bin; Merkl, Martin; Meuris, Aline; Miniutti, Giovanni; Minuti, Massimo; Morbidini, Alfredo; Morgante, Gianluca; Muleri, Fabio; Munini, Riccardo; Mussolin, Lorenzo; Negri, Barbara; Nie, Jianyin; Novak, Petr; Nowosielski, Witold; Nuti, Alessio; Onat, Ahmet; Orleanski, Piotr; Orsini, Leonardo; Ottensamer, Roland; Ou, Ge; Pacciani, Luigi; Paltani, Stephane; Pan, Teng; Pan, Kai; Pareschi, Giovanni; Patruno, Alessandro; Pepponi, Giancarlo; Perinati, Emanuele; Piazzolla, Raffaele; Picciotto, Antonino; Piemonte, Claudio; Pinchera, Michele; Pliego, Samuel; Poutanen, Juri; Qi, Liqiang; Qi, Fazhi; Qiang, Pengfei; Qiao, Fangjian; Qiao, Zheng; Qiu, Xiangbiao; Qiu, Chengbo; Qu, Jinlu; Rachevski, Alexandre; Rashevskaia, Irina; Rea, Nanda; Ribo, Marc; de la Rie, Rob; Rodriguez, Jerome; Rodriguez Gil, Pablo; Sala, Gloria; Schanz, Thomas; Serafinelli, Roberto; Sgro, Carmelo; Shen, Zhengxiang; Sheng, Lizhi; Shi, Jingyan; Sironi, Giorgia; Skup, Konrad; Song, Liming; Song, Zeyu; Song, Jiangbo; Spandre, Gloria; Spiga, Daniele; Su, Yongquan; Sun, Liang; Sungur, Muberra; Sveda, Libor; Tagliaferri, Gianpiero; Tan, Ying; Tao, Lian; Tcherniak, Denis; Tenzer, Chris; Todaro, Michela; Tolos, Laura; Torok, Gabriel; Torres, Diego F.; Trois, Alessio; Turhan, Onur; Uttley, Phil; Vacchi, Andrea; Virgilli, Enrico; Vogel, Channah; Walton, Dave; Wang, Jian; Wang, Xianqi; Wang, Bo; Wang, Langping; Wang, Xiaofeng; Wang, Dianlong; Wang, Yusa; Wang, Juan; Wang, Hao; Wang, Ruijie; Wang, Ping; Wang, Lingjun; Wang, Wenshuai; Wang, Tian; Wang, Haoyu; Wang, Zhanshan; Watts, Anna L.; Wen, Xiangyang; Wilms, Joern; Winter, Berend; Wu, Xin; Wu, Chao; Wu, Zhenyu; Wu, Qiong; Wu, Kaiji; Xiong, Hao; Xiong, Shaolin; Xu, Wei; Xu, Zhao; Xu, Jingjing; Xu, Xiongwei; Xue, Jiadai; Yan, Yongqing; Yan, Xingtao; Yang, Xianghui; Yang, Yanji; Yang, Xiongtao; Yang, Sheng; Yang, Jiawei; Yang, Yingquan; Yi, Shuxu; Yu, Yonggao; Yu, Ke; Zampa, Ganluigi; Zampa, Nicola; Zane, Silvia; Zdziarski, Andrzej A.; Zhang, Long; Zhang, Shu; Zhang, Wenda; Zhang, Xiaoli; Zhang, Zhen; Zhang, Jiawei; Zhang, Fan; Zhang, Ziliang; Zhang, Dali; Zhang, Honglin; Zhang, Aimei; Zhang, Tong; Zhang, Hongmei; Zhang, Juan; Zhang, Liang; Zhang, Yueting; Zhao, Li; Zhao, Baosheng; Zhao, Zijian; Zhao, Xiaofan; Zhao, Haisheng; Zhao, Xiaoyun; Zheng, Shijie; Zhou, Yupeng; Zhou, Xiaohong; Zhu, Jiahuan; Zhu, Yuxuan; Zhu, Cheng; Zhu, Zhencai; Zorzi, Nicola; Zwart, Frans, The enhanced X-ray Timing and Polarimetry mission (eXTP) is a flagship observatory for X-ray timing, spectroscopy and polarimetry developed by an International Consortium. Thanks to its very large collecting area, good spectral resolution and unprecedented polarimetry capabilities, eXTP will explore the properties of matter and the propagation of light in the most extreme conditions found in the Universe. eXTP will, in addition, be a powerful X-ray observatory. The mission will continuously monitor the X-ray sky, and will enable multiwavelength and multi-messenger studies. The mission is currently in phase B, which will be completed in the middle of 2022. © 2022 SPIE. All rights reserved., The Chinese team acknowledges support by the Chinese Academy of Sciences through the Strategic Priority Research Program, Grant No. XDA15020100. The Italian authors acknowledge funding support by the Italian Space Agency (under agreement n. 2020-3-HH.0 and ASI-INAF n.2017-14-H.O) and INFN (project XRO -X-ray Observatories). The Spanish authors acknowledge funding support from the MICIN/AEI grant PID2019-108709GB-I00. The German team acknowledges support from the Bundesministerium fur Wirtschaft und Technologie through the Deutsches Zentrum fur Luft-und Raumfahrt e.V. (DLR) under the grant number FKZ 50 OO 1902. The Polish team acknowledges FNP grant POIR.04.04.00-00-5C65/17. The Czech team acknowledges support from the GACR project 21-06825X. The Turkish team acknowledges support from the Turkish Space Agency., With funding from the Spanish government through the Severo Ochoa Centre of Excellence accreditation SEV-2017-0709
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- 2022
13. Effects of capillary reflection in the performance of the collimator of the Large Area Detector on board LOFT
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Mineo, Teresa, Fraser, George W., Martindale, Adrian, Feldman, Charly, Campana, Riccardo, Cusumano, Giancarlo, and Feroci, Marco
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- 2014
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14. Erratum to: Towards practical autonomous deep-space navigation using X-Ray pulsar timing
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Shemar, Setnam, Fraser, George, Heil, Lucy, Hindley, David, Martindale, Adrian, Molyneux, Philippa, Pye, John, Warwick, Robert, and Lamb, Andrew
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- 2017
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15. The Distribution of Peak-Ring Basins on Mercury and their Correlation with the High-Mg/Si Terrane
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Hall, Graeme, primary, Martindale, Adrian, additional, Bridges, John, additional, and Bunce, Emma, additional
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- 2020
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16. The enhanced X-ray Timing and Polarimetry mission—eXTP
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Zhang, ShuangNan, primary, Santangelo, Andrea, additional, Feroci, Marco, additional, Xu, YuPeng, additional, Lu, FangJun, additional, Chen, Yong, additional, Feng, Hua, additional, Zhang, Shu, additional, Brandt, Søren, additional, Hernanz, Margarita, additional, Baldini, Luca, additional, Bozzo, Enrico, additional, Campana, Riccardo, additional, De Rosa, Alessandra, additional, Dong, YongWei, additional, Evangelista, Yuri, additional, Karas, Vladimir, additional, Meidinger, Norbert, additional, Meuris, Aline, additional, Nandra, Kirpal, additional, Pan, Teng, additional, Pareschi, Giovanni, additional, Orleanski, Piotr, additional, Huang, QiuShi, additional, Schanne, Stephane, additional, Sironi, Giorgia, additional, Spiga, Daniele, additional, Svoboda, Jiri, additional, Tagliaferri, Gianpiero, additional, Tenzer, Christoph, additional, Vacchi, Andrea, additional, Zane, Silvia, additional, Walton, Dave, additional, Wang, ZhanShan, additional, Winter, Berend, additional, Wu, Xin, additional, in’ t Zand, Jean J. M., additional, Ahangarianabhari, Mahdi, additional, Ambrosi, Giovanni, additional, Ambrosino, Filippo, additional, Barbera, Marco, additional, Basso, Stefano, additional, Bayer, Jörg, additional, Bellazzini, Ronaldo, additional, Bellutti, Pierluigi, additional, Bertucci, Bruna, additional, Bertuccio, Giuseppe, additional, Borghi, Giacomo, additional, Cao, XueLei, additional, Cadoux, Franck, additional, Ceraudo, Francesco, additional, Chen, TianXiang, additional, Chen, YuPeng, additional, Chevenez, Jerome, additional, Civitani, Marta, additional, Cui, Wei, additional, Cui, WeiWei, additional, Dauser, Thomas, additional, Del Monte, Ettore, additional, Di Cosimo, Sergio, additional, Diebold, Sebastian, additional, Doroshenko, Victor, additional, Dovciak, Michal, additional, Du, YuanYuan, additional, Ducci, Lorenzo, additional, Fan, QingMei, additional, Favre, Yannick, additional, Fuschino, Fabio, additional, Gálvez, José Luis, additional, Gao, Min, additional, Ge, MingYu, additional, Gevin, Olivier, additional, Grassi, Marco, additional, Gu, QuanYing, additional, Gu, YuDong, additional, Han, DaWei, additional, Hong, Bin, additional, Hu, Wei, additional, Ji, Long, additional, Jia, ShuMei, additional, Jiang, WeiChun, additional, Kennedy, Thomas, additional, Kreykenbohm, Ingo, additional, Kuvvetli, Irfan, additional, Labanti, Claudio, additional, Latronico, Luca, additional, Li, Gang, additional, Li, MaoShun, additional, Li, Xian, additional, Li, Wei, additional, Li, ZhengWei, additional, Limousin, Olivier, additional, Liu, HongWei, additional, Liu, XiaoJing, additional, Lu, Bo, additional, Luo, Tao, additional, Macera, Daniele, additional, Malcovati, Piero, additional, Martindale, Adrian, additional, Michalska, Malgorzata, additional, Meng, Bin, additional, Minuti, Massimo, additional, Morbidini, Alfredo, additional, Muleri, Fabio, additional, Paltani, Stephane, additional, Perinati, Emanuele, additional, Picciotto, Antonino, additional, Piemonte, Claudio, additional, Qu, JinLu, additional, Rachevski, Alexandre, additional, Rashevskaya, Irina, additional, Rodriguez, Jerome, additional, Schanz, Thomas, additional, Shen, ZhengXiang, additional, Sheng, LiZhi, additional, Song, JiangBo, additional, Song, LiMing, additional, Sgro, Carmelo, additional, Sun, Liang, additional, Tan, Ying, additional, Uttley, Phil, additional, Wang, Bo, additional, Wang, DianLong, additional, Wang, GuoFeng, additional, Wang, Juan, additional, Wang, LangPing, additional, Wang, YuSa, additional, Watts, Anna L., additional, Wen, XiangYang, additional, Wilms, Jörn, additional, Xiong, ShaoLin, additional, Yang, JiaWei, additional, Yang, Sheng, additional, Yang, YanJi, additional, Yu, Nian, additional, Zhang, WenDa, additional, Zampa, Gianluigi, additional, Zampa, Nicola, additional, Zdziarski, Andrzej A., additional, Zhang, AiMei, additional, Zhang, ChengMo, additional, Zhang, Fan, additional, Zhang, Long, additional, Zhang, Tong, additional, Zhang, Yi, additional, Zhang, XiaoLi, additional, Zhang, ZiLiang, additional, Zhao, BaoSheng, additional, Zheng, ShiJie, additional, Zhou, YuPeng, additional, Zorzi, Nicola, additional, and Zwart, J. Frans, additional
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- 2018
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17. Capabilities of a lobster eye telescope in the outer solar system.
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Feldman, Charlotte, Dunn, William, Lindsay, Simon, and Martindale, Adrian
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- 2023
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18. The large area detector onboard the eXTP mission
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Feroci, Marco, primary, Karas, Vladimir, primary, Orleański, Piotr, primary, Santangelo, Andrea, primary, Schanne, Stéphane, primary, Wu, Xin, primary, Zane, Silvia, primary, Zhang, Shuangnan, primary, Vacchi, Andrea, primary, Paltani, Stephane, primary, Bellutti, Pierluigi, primary, Ambrosi, Giovanni, primary, Bozzo, Enrico, primary, XU, Yupeng, primary, Zdziarski, Andrzej, primary, De Rosa, Alessandra, primary, Ambrosino, Filippo, primary, Barbera, Marco, primary, Limousin, Olivier, primary, Ahangarianabhari, Mahdi, primary, Argan, Andrea, primary, Bertucci, Bruna, primary, Bertuccio, Giuseppe, primary, Bayer, Joerg, primary, Borghi, Giacomo, primary, Cadeaux, Franck, primary, Campana, Riccardo, primary, Ceraudo, Francesco, primary, Cirrincione, Daniela, primary, Del Monte, Ettore, primary, Di Cosimo, Sergio, primary, Evangelista, Yuri, primary, diebold, Sebastian, primary, Favre, Yannick, primary, Ficorella, Francesco, primary, Fuschino, Fabio, primary, Gevin, Olivier, primary, Grassi, Marco, primary, Kennedy, Tom, primary, Labanti, Claudio, primary, Lo Cicero, Ugo, primary, Malcovati, Piero, primary, Martindale, Adrian, primary, Meuris, Aline, primary, Michalska, Malgrozata, primary, Morbidini, Alfredo, primary, Muleri, Fabio, primary, perinati, emanuele, primary, Picciotto, Antonino, primary, Pohl, Martin, primary, Rashvskaya, Irina, primary, Svoboda, Jiri, primary, Skup, Kornad, primary, Tenzer, Chris, primary, Walton, Dave, primary, Winter, Berend, primary, Zampa, Gianluigi, primary, Zampa, Nicola, primary, Zorzi, Nicola, primary, Zhang, Shu, primary, Chen, Tianxiang, primary, Fan, Qingmei, primary, Hong, Bin, primary, Mao, Hanqi, primary, Lu, Fangjun, primary, Luo, Tao, primary, Zhou, Yupeng, primary, Zhang, Long, primary, Zhang, Wenda, primary, Pan, Teng, primary, and zhang, xiaoli, primary
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- 2018
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19. Microchannel plate x-ray optics on the Mercury imaging x-ray spectrometer
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Pearson, James F., primary, Martindale, Adrian, primary, Feldman, Charlotte H., primary, Butcher, Gillian I., primary, Willingale, Richard, primary, Fairbend, Ray, primary, Schyns, Emile, primary, and Bunce, Emma J., primary
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- 2018
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20. Testing and modelling of the SVOM MXT narrow field lobster-eye telescope
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Mercier, Karine, primary, Le Duigou, Jean-Michel, primary, Gotz, Diego, primary, Feldman, Charlotte H., primary, Pearson, James F., primary, Willingale, Richard, primary, Sykes, Jonathan M., primary, Bicknell, Christopher L., primary, Houghton, Paul R., primary, Drumm, Paul, primary, Martindale, Adrian, primary, Osborne, Julian P., primary, O'Brien, Paul T., primary, Fairbend, Ray, primary, Petit, Sylvain, primary, Roudot, Romain, primary, and Schyns, Emile, primary
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- 2017
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21. Microchannel plate X-ray optics on the Mercury Imaging X-ray Spectrometer.
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Martindale, Adrian, Pearson, James F., Feldman, Charly H., Butcher, Gillian I., Willingale, Richard, Fairbend, Ray, Schyns, Emile, and Bunce, Emma J.
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- 2018
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22. Capabilities of a lobster eye telescope in the outer solar system
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O'Dell, Stephen L., Gaskin, Jessica A., Pareschi, Giovanni, Spiga, Daniele, Feldman, Charlotte, Dunn, William, Lindsay, Simon, and Martindale, Adrian
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- 2023
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23. Testing and modelling of the SVOM MXT narrow field lobster eye telescope optic.
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Feldman, Charlotte, Pearson, James, Willingale, Richard, Sykes, John, Drumm, Paul, Houghton, Paul, Bicknell, Chris, Osborne, Julian, Martindale, Adrian, O'Brien, Paul, Fairbend, Ray, Schyns, Emile, Petit, Sylvan, Roudot, Romain, Mercier, Karine, Le Duigou, Jean-Michel, and Götz, Diego
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- 2017
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24. The enhanced X-ray Timing and Polarimetry mission—eXTP
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Zhang, ShuangNan, Santangelo, Andrea, Feroci, Marco, Xu, YuPeng, Lu, FangJun, Chen, Yong, Feng, Hua, Zhang, Shu, Brandt, Søren, Hernanz, Margarita, Baldini, Luca, Bozzo, Enrico, Campana, Riccardo, Rosa, Alessandra, Dong, YongWei, Evangelista, Yuri, Karas, Vladimir, Meidinger, Norbert, Meuris, Aline, Nandra, Kirpal, Pan, Teng, Pareschi, Giovanni, Orleanski, Piotr, Huang, QiuShi, Schanne, Stephane, Sironi, Giorgia, Spiga, Daniele, Svoboda, Jiri, Tagliaferri, Gianpiero, Tenzer, Christoph, Vacchi, Andrea, Zane, Silvia, Walton, Dave, Wang, ZhanShan, Winter, Berend, Wu, Xin, in’ t Zand, Jean, Ahangarianabhari, Mahdi, Ambrosi, Giovanni, Ambrosino, Filippo, Barbera, Marco, Basso, Stefano, Bayer, Jörg, Bellazzini, Ronaldo, Bellutti, Pierluigi, Bertucci, Bruna, Bertuccio, Giuseppe, Borghi, Giacomo, Cao, XueLei, Cadoux, Franck, Campana, Riccardo, Ceraudo, Francesco, Chen, TianXiang, Chen, YuPeng, Chevenez, Jerome, Civitani, Marta, Cui, Wei, Cui, WeiWei, Dauser, Thomas, Monte, Ettore, Cosimo, Sergio, Diebold, Sebastian, Doroshenko, Victor, Dovciak, Michal, Du, YuanYuan, Ducci, Lorenzo, Fan, QingMei, Favre, Yannick, Fuschino, Fabio, Gálvez, José, Gao, Min, Ge, MingYu, Gevin, Olivier, Grassi, Marco, Gu, QuanYing, Gu, YuDong, Han, DaWei, Hong, Bin, Hu, Wei, Ji, Long, Jia, ShuMei, Jiang, WeiChun, Kennedy, Thomas, Kreykenbohm, Ingo, Kuvvetli, Irfan, Labanti, Claudio, Latronico, Luca, Li, Gang, Li, MaoShun, Li, Xian, Li, Wei, Li, ZhengWei, Limousin, Olivier, Liu, HongWei, Liu, XiaoJing, Lu, Bo, Luo, Tao, Macera, Daniele, Malcovati, Piero, Martindale, Adrian, Michalska, Malgorzata, Meng, Bin, Minuti, Massimo, Morbidini, Alfredo, Muleri, Fabio, Paltani, Stephane, Perinati, Emanuele, Picciotto, Antonino, Piemonte, Claudio, Qu, JinLu, Rachevski, Alexandre, Rashevskaya, Irina, Rodriguez, Jerome, Schanz, Thomas, Shen, ZhengXiang, Sheng, LiZhi, Song, JiangBo, Song, LiMing, Sgro, Carmelo, Sun, Liang, Tan, Ying, Uttley, Phil, Wang, Bo, Wang, DianLong, Wang, GuoFeng, Wang, Juan, Wang, LangPing, Wang, YuSa, Watts, Anna, Wen, XiangYang, Wilms, Jörn, Xiong, ShaoLin, Yang, JiaWei, Yang, Sheng, Yang, YanJi, Yu, Nian, Zhang, WenDa, Zampa, Gianluigi, Zampa, Nicola, Zdziarski, Andrzej, Zhang, AiMei, Zhang, ChengMo, Zhang, Fan, Zhang, Long, Zhang, Tong, Zhang, Yi, Zhang, XiaoLi, Zhang, ZiLiang, Zhao, BaoSheng, Zheng, ShiJie, Zhou, YuPeng, Zorzi, Nicola, and Zwart, J.
- Abstract
In this paper we present the enhanced X-ray Timing and Polarimetry mission—eXTP. eXTP is a space science mission designed to study fundamental physics under extreme conditions of density, gravity and magnetism. The mission aims at determining the equation of state of matter at supra-nuclear density, measuring effects of QED, and understanding the dynamics of matter in strong-field gravity. In addition to investigating fundamental physics, eXTP will be a very powerful observatory for astrophysics that will provide observations of unprecedented quality on a variety of galactic and extragalactic objects. In particular, its wide field monitoring capabilities will be highly instrumental to detect the electro-magnetic counterparts of gravitational wave sources. The paper provides a detailed description of: (1) the technological and technical aspects, and the expected performance of the instruments of the scientific payload; (2) the elements and functions of the mission, from the spacecraft to the ground segment.
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- 2019
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25. The Large Area Detector onboard the eXTP mission
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den Herder, Jan-Willem A., Nikzad, Shouleh, Nakazawa, Kazuhiro, Feroci, Marco, Ahangarianabhari, Mahdi, Ambrosi, Giovanni, Ambrosino, Filippo, Argan, Andrea, Barbera, Marco, Bayer, Joerg, Bellutti, Pierluigi, Bertucci, Bruna, Bertuccio, Giuseppe, Borghi, Giacomo, Bozzo, Enrico, Cadeaux, Franck, Campana, Riccardo, Ceraudo, Francesco, Chen, Tianxiang, Cirrincione, Daniela, De Rosa, Alessandra, Del Monte, Ettore, Di Cosimo, Sergio, Diebold, Sebastian, Evangelista, Yuri, Fan, Qingmei, Favre, Yannick, Ficorella, Francesco, Fuschino, Fabio, Gevin, Olivier, Grassi, Marco, Hong, Bin, Mao, Hanqi, Karas, Vladimir, Kennedy, Tom, Labanti, Claudio, Limousin, Olivier, Lo Cicero, Ugo, Lu, Fangjun, Luo, Tao, Malcovati, Piero, Martindale, Adrian, Meuris, Aline, Michalska, Malgrozata, Morbidini, Alfredo, Muleri, Fabio, Orleański, Piotr, Paltani, Stephane, Pan, Teng, Perinati, Emanuele, Picciotto, Antonino, Pohl, Martin, Rashvskaia, Irina, Santangelo, Andrea, Schanne, Stéphane, Skup, Kornad, Svoboda, Jiri, Tenzer, Chris, Vacchi, Andrea, Walton, Dave, Winter, Berend, Wu, Xin, Xu, Yupeng, Zampa, Gianluigi, Zampa, Nicola, Zane, Silvia, Zdziarski, Andrzej, Zhang, Long, Zhang, Shu, Zhang, Shuangnan, Zhang, Wenda, Zhang, Xiaoli, Zhou, Yupeng, and Zorzi, Nicola
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- 2018
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26. Microchannel plate x-ray optics on the Mercury imaging x-ray spectrometer
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den Herder, Jan-Willem A., Nikzad, Shouleh, Nakazawa, Kazuhiro, Martindale, Adrian, Pearson, James F., Feldman, Charlotte H., Butcher, Gillian I., Willingale, Richard, Fairbend, Ray, Schyns, Emile, and Bunce, Emma J.
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- 2018
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27. Effects of capillary reflection in the performance of the collimator of the Large Area Detector on board LOFT
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Mineo, Teresa, primary, Fraser, George W., additional, Martindale, Adrian, additional, Feldman, Charly, additional, Campana, Riccardo, additional, Cusumano, Giancarlo, additional, and Feroci, Marco, additional
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- 2013
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28. Testing and modelling of the SVOM MXT narrow field lobster-eye telescope
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O'Dell, Stephen L., Pareschi, Giovanni, Feldman, Charlotte, Pearson, James, Willingale, Richard, Sykes, John, Drumm, Paul, Houghton, Paul, Bicknell, Chris, Osborne, Julian, Martindale, Adrian, O'Brien, Paul, Fairbend, Ray, Schyns, Emile, Petit, Sylvain, Roudot, Romain, Mercier, Karine, Le Duigou, Jean-Michel, and Gotz, Diego
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- 2017
- Full Text
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29. Simple filters enable x-ray polarization measurements
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Martindale, Adrian, primary, Bannister, Nigel, additional, and Cotton, Daniel, additional
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- 2009
- Full Text
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30. Rationale for BepiColombo Studies of Mercury’s Surface and Composition
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Rothery, David A., Massironi, Matteo, Alemanno, Giulia, Barraud, Océane, Besse, Sebastien, Bott, Nicolas, Brunetto, Rosario, Bunce, Emma, Byrne, Paul, Capaccioni, Fabrizio, Capria, Maria Teresa, Carli, Cristian, Charlier, Bernard, Cornet, Thomas, Cremonese, Gabriele, D’Amore, Mario, De Sanctis, M. Cristina, Doressoundiram, Alain, Ferranti, Luigi, Filacchione, Gianrico, Galluzzi, Valentina, Giacomini, Lorenza, Grande, Manuel, Guzzetta, Laura G., Helbert, Jörn, Heyner, Daniel, Hiesinger, Harald, Hussmann, Hauke, Hyodo, Ryuku, Kohout, Tomas, Kozyrev, Alexander, Litvak, Maxim, Lucchetti, Alice, Malakhov, Alexey, Malliband, Christopher, Mancinelli, Paolo, Martikainen, Julia, Martindale, Adrian, Maturilli, Alessandro, Milillo, Anna, Mitrofanov, Igor, Mokrousov, Maxim, Morlok, Andreas, Muinonen, Karri, Namur, Olivier, Owens, Alan, Nittler, Larry R., Oliveira, Joana S., Palumbo, Pasquale, Pajola, Maurizio, Pegg, David L., Penttilä, Antti, Politi, Romolo, Quarati, Francesco, Re, Cristina, Sanin, Anton, Schulz, Rita, Stangarone, Claudia, Stojic, Aleksandra, Tretiyakov, Vladislav, Väisänen, Timo, Varatharajan, Indhu, Weber, Iris, Wright, Jack, Wurz, Peter, and Zambon, Francesca
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13. Climate action ,520 Astronomy ,620 Engineering - Abstract
BepiColombo has a larger and in many ways more capable suite of instrumentsrelevant for determination of the topographic, physical, chemical and mineralogical proper-ties of Mercury’s surface than the suite carried by NASA’s MESSENGER spacecraft. More-over, BepiColombo’s data rate is substantially higher. This equips it to confirm, elaborateupon, and go beyond many of MESSENGER’s remarkable achievements. Furthermore, thegeometry of BepiColombo’s orbital science campaign, beginning in 2026, will enable itto make uniformly resolved observations of both northern and southern hemispheres. Thiswill offer more detailed and complete imaging and topographic mapping, element mappingwith better sensitivity and improved spatial resolution, and totally new mineralogical map-ping.We discuss MESSENGER data in the context of preparing for BepiColombo, and de-scribe the contributions that we expect BepiColombo to make towards increased knowledgeand understanding of Mercury’s surface and its composition. Much current work, includinganalysis of analogue materials, is directed towards better preparing ourselves to understandwhat BepiColombo might reveal. Some of MESSENGER’s more remarkable observationswere obtained under unique or extreme conditions. BepiColombo should be able to confirmthe validity of these observations and reveal the extent to which they are representative ofthe planet as a whole. It will also make new observations to clarify geological processesgoverning and reflecting crustal origin and evolution.We anticipate that the insights gained into Mercury’s geological history and its currentspace weathering environment will enable us to better understand the relationships of surfacechemistry, morphologies and structures with the composition of crustal types, including thenature and mobility of volatile species. This will enable estimation of the composition of the mantle from which the crust was derived, and lead to tighter constraints on models forMercury’s origin including the nature and original heliocentric distance of the material fromwhich it formed.
31. Observational conditions for the detection of X-ray fluorescence from sodium by the MIXS instrument on BepiColumbo.
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Cooper, Rose, Grande, Manuel, Martindale, Adrian, and Bunce, Emma
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- 2018
32. The enhanced X-ray Timing and Polarimetry mission—eXTP
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ShuangNan Zhang, Andrea Santangelo, Marco Feroci, YuPeng Xu, FangJun Lu, Yong Chen, Hua Feng, Shu Zhang, Søren Brandt, Margarita Hernanz, Luca Baldini, Enrico Bozzo, Riccardo Campana, Alessandra De Rosa, YongWei Dong, Yuri Evangelista, Vladimir Karas, Norbert Meidinger, Aline Meuris, Kirpal Nandra, Teng Pan, Giovanni Pareschi, Piotr Orleanski, QiuShi Huang, Stephane Schanne, Giorgia Sironi, Daniele Spiga, Jiri Svoboda, Gianpiero Tagliaferri, Christoph Tenzer, Andrea Vacchi, Silvia Zane, Dave Walton, ZhanShan Wang, Berend Winter, Xin Wu, Jean J. M. in’ t Zand, Mahdi Ahangarianabhari, Giovanni Ambrosi, Filippo Ambrosino, Marco Barbera, Stefano Basso, Jörg Bayer, Ronaldo Bellazzini, Pierluigi Bellutti, Bruna Bertucci, Giuseppe Bertuccio, Giacomo Borghi, XueLei Cao, Franck Cadoux, Francesco Ceraudo, TianXiang Chen, YuPeng Chen, Jerome Chevenez, Marta Civitani, Wei Cui, WeiWei Cui, Thomas Dauser, Ettore Del Monte, Sergio Di Cosimo, Sebastian Diebold, Victor Doroshenko, Michal Dovciak, YuanYuan Du, Lorenzo Ducci, QingMei Fan, Yannick Favre, Fabio Fuschino, José Luis Gálvez, Min Gao, MingYu Ge, Olivier Gevin, Marco Grassi, QuanYing Gu, YuDong Gu, DaWei Han, Bin Hong, Wei Hu, Long Ji, ShuMei Jia, WeiChun Jiang, Thomas Kennedy, Ingo Kreykenbohm, Irfan Kuvvetli, Claudio Labanti, Luca Latronico, Gang Li, MaoShun Li, Xian Li, Wei Li, ZhengWei Li, Olivier Limousin, HongWei Liu, XiaoJing Liu, Bo Lu, Tao Luo, Daniele Macera, Piero Malcovati, Adrian Martindale, Malgorzata Michalska, Bin Meng, Massimo Minuti, Alfredo Morbidini, Fabio Muleri, Stephane Paltani, Emanuele Perinati, Antonino Picciotto, Claudio Piemonte, JinLu Qu, Alexandre Rachevski, Irina Rashevskaya, Jerome Rodriguez, Thomas Schanz, ZhengXiang Shen, LiZhi Sheng, JiangBo Song, LiMing Song, Carmelo Sgro, Liang Sun, Ying Tan, Phil Uttley, Bo Wang, DianLong Wang, GuoFeng Wang, Juan Wang, LangPing Wang, YuSa Wang, Anna L. Watts, XiangYang Wen, Jörn Wilms, ShaoLin Xiong, JiaWei Yang, Sheng Yang, YanJi Yang, Nian Yu, WenDa Zhang, Gianluigi Zampa, Nicola Zampa, Andrzej A. Zdziarski, AiMei Zhang, ChengMo Zhang, Fan Zhang, Long Zhang, Tong Zhang, Yi Zhang, XiaoLi Zhang, ZiLiang Zhang, BaoSheng Zhao, ShiJie Zheng, YuPeng Zhou, Nicola Zorzi, J. Frans Zwart, ITA, GBR, FRA, DEU, ESP, DNK, POL, CZE, CHN, Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, eXTP, Zhang, ShuangNan, Santangelo, Andrea, Feroci, Marco, Xu, YuPeng, Lu, FangJun, Chen, Yong, Feng, Hua, Zhang, Shu, Brandt, Søren, Hernanz, Margarita, Baldini, Luca, Bozzo, Enrico, Campana, Riccardo, De Rosa, Alessandra, Dong, YongWei, Evangelista, Yuri, Karas, Vladimir, Meidinger, Norbert, Meuris, Aline, Nandra, Kirpal, Pan, Teng, Pareschi, Giovanni, Orleanski, Piotr, Huang, QiuShi, Schanne, Stephane, Sironi, Giorgia, Spiga, Daniele, Svoboda, Jiri, Tagliaferri, Gianpiero, Tenzer, Christoph, Vacchi, Andrea, Zane, Silvia, Walton, Dave, Wang, ZhanShan, Winter, Berend, Wu, Xin, in’ t Zand, Jean J. M., Ahangarianabhari, Mahdi, Ambrosi, Giovanni, Ambrosino, Filippo, Barbera, Marco, Basso, Stefano, Bayer, Jörg, Bellazzini, Ronaldo, Bellutti, Pierluigi, Bertucci, Bruna, Bertuccio, Giuseppe, Borghi, Giacomo, Cao, XueLei, Cadoux, Franck, Ceraudo, Francesco, Chen, TianXiang, Chen, YuPeng, Chevenez, Jerome, Civitani, Marta, Cui, Wei, Cui, WeiWei, Dauser, Thoma, Del Monte, Ettore, Di Cosimo, Sergio, Diebold, Sebastian, Doroshenko, Victor, Dovciak, Michal, Du, YuanYuan, Ducci, Lorenzo, Fan, QingMei, Favre, Yannick, Fuschino, Fabio, Gálvez, José Lui, Gao, Min, Ge, MingYu, Gevin, Olivier, Grassi, Marco, Gu, QuanYing, Gu, YuDong, Han, DaWei, Hong, Bin, Hu, Wei, Ji, Long, Jia, ShuMei, Jiang, WeiChun, Kennedy, Thoma, Kreykenbohm, Ingo, Kuvvetli, Irfan, Labanti, Claudio, Latronico, Luca, Li, Gang, Li, MaoShun, Li, Xian, Li, Wei, Li, ZhengWei, Limousin, Olivier, Liu, HongWei, Liu, XiaoJing, Lu, Bo, Luo, Tao, Macera, Daniele, Malcovati, Piero, Martindale, Adrian, Michalska, Malgorzata, Meng, Bin, Minuti, Massimo, Morbidini, Alfredo, Muleri, Fabio, Paltani, Stephane, Perinati, Emanuele, Picciotto, Antonino, Piemonte, Claudio, Qu, JinLu, Rachevski, Alexandre, Rashevskaya, Irina, Rodriguez, Jerome, Schanz, Thoma, Shen, ZhengXiang, Sheng, LiZhi, Song, JiangBo, Song, LiMing, Sgro, Carmelo, Sun, Liang, Tan, Ying, Uttley, Phil, Wang, Bo, Wang, DianLong, Wang, GuoFeng, Wang, Juan, Wang, LangPing, Wang, YuSa, Watts, Anna L., Wen, XiangYang, Wilms, Jörn, Xiong, ShaoLin, Yang, JiaWei, Yang, Sheng, Yang, YanJi, Yu, Nian, Zhang, WenDa, Zampa, Gianluigi, Zampa, Nicola, Zdziarski, Andrzej A., Zhang, AiMei, Zhang, ChengMo, Zhang, Fan, Zhang, Long, Zhang, Tong, Zhang, Yi, Zhang, XiaoLi, Zhang, ZiLiang, Zhao, BaoSheng, Zheng, ShiJie, Zhou, YuPeng, Zorzi, Nicola, Zwart, J. Frans, and High Energy Astrophys. & Astropart. Phys (API, FNWI)
- Subjects
Gravity (chemistry) ,Computer science ,space mission: eXTP ,X-ray timing ,Polarimetry ,General Physics and Astronomy ,FOS: Physical sciences ,01 natural sciences ,7. Clean energy ,Physics and Astronomy (all) ,Settore FIS/05 - Astronomia E Astrofisica ,Observatory ,X-ray instrumentation ,0103 physical sciences ,X-ray polarimetry ,Ground segment ,Aerospace engineering ,010306 general physics ,010303 astronomy & astrophysics ,Instrumentation and Methods for Astrophysics (astro-ph.IM) ,High Energy Astrophysical Phenomena (astro-ph.HE) ,Spacecraft ,sezele ,business.industry ,Payload ,Gravitational wave ,Astrophysics::Instrumentation and Methods for Astrophysics ,Space Science ,business ,Astrophysics - Instrumentation and Methods for Astrophysics ,Astrophysics - High Energy Astrophysical Phenomena ,[PHYS.ASTR]Physics [physics]/Astrophysics [astro-ph] - Abstract
In this paper we present the enhanced X-ray Timing and Polarimetry mission - eXTP. eXTP is a space science mission designed to study fundamental physics under extreme conditions of density, gravity and magnetism. The mission aims at determining the equation of state of matter at supra-nuclear density, measuring effects of QED, and understanding the dynamics of matter in strong-field gravity. In addition to investigating fundamental physics, eXTP will be a very powerful observatory for astrophysics that will provide observations of unprecedented quality on a variety of galactic and extragalactic objects. In particular, its wide field monitoring capabilities will be highly instrumental to detect the electro-magnetic counterparts of gravitational wave sources. The paper provides a detailed description of: (1) the technological and technical aspects, and the expected performance of the instruments of the scientific payload; (2) the elements and functions of the mission, from the spacecraft to the ground segment., Accepted for publication on Sci. China Phys. Mech. Astron. (2019)
- Published
- 2019
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