1. Towards Measurements of Chiral Effects Using Identified Particles from STAR
- Author
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Wen, L, Adamczyk, L, Adkins, JK, Agakishiev, G, Aggarwal, MM, Ahammed, Z, Alekseev, I, Aparin, A, Arkhipkin, D, Aschenauer, EC, Ashraf, MU, Attri, A, Averichev, GS, Bai, X, Bairathi, V, Bellwied, R, Bhasin, A, Bhati, AK, Bhattarai, P, Bielcik, J, Bielcikova, J, Bland, LC, Bordyuzhin, IG, Bouchet, J, Brandenburg, JD, Brandin, AV, Bunzarov, I, Butterworth, J, Caines, H, Sanchez, MCDLB, Campbell, JM, Cebra, D, Chakaberia, I, Chaloupka, P, Chang, Z, Chatterjee, A, Chattopadhyay, S, Chen, X, Chen, JH, Cheng, J, Cherney, M, Christie, W, Contin, G, Crawford, HJ, Das, S, De Silva, LC, Debbe, RR, Dedovich, TG, Deng, J, Derevschikov, AA, di Ruzza, B, Didenko, L, Dilks, C, Dong, X, Drachenberg, JL, Draper, JE, Du, CM, Dunkelberger, LE, Dunlop, JC, Efimov, LG, Engelage, J, Eppley, G, Esha, R, Evdokimov, O, Eyser, O, Fatemi, R, Fazio, S, Federic, P, Fedorisin, J, Feng, Z, Filip, P, Fisyak, Y, Flores, CE, Fulek, L, Gagliardi, CA, Garand, D, Geurts, F, Gibson, A, Girard, M, Greiner, L, Grosnick, D, Gunarathne, DS, Guo, Y, Gupta, S, Gupta, A, Guryn, W, Hamad, AI, Hamed, A, Haqgue, R, Harris, JW, He, L, Heppelmann, S, Hirsch, A, Hoffmann, GW, Horvat, S, Huang, T, Huang, B, Huang, X, Huang, HZ, Huck, P, Humanic, TJ, Igo, G, Jacobs, WW, Jang, H, Jentsch, A, Jia, J, Jiang, K, Judd, EG, Kabana, S, Kalinkin, D, Kang, K, Kauder, K, Ke, HW, Keane, D, Kechechyan, A, Khan, ZH, Kikola, DP, Kisel, I, Kisiel, A, Kochenda, L, Koetke, DD, Kosarzewski, LK, Kraishan, AF, Kravtsov, P, Krueger, K, Kumar, L, Lamont, MAC, Landgraf, JM, Landry, KD, Lauret, J, Lebedev, A, Lednicky, R, Lee, JH, Li, X, Li, Y, Li, C, Li, W, Lin, T, Lisa, MA, Liu, F, Ljubicic, T, Llope, WJ, Lomnitz, M, Longacre, RS, Luo, X, Luo, S, Ma, GL, Ma, L, Ma, YG, Ma, R, Magdy, N, Majka, R, Manion, A, Margetis, S, Markert, C, Matis, HS, McDonald, D, McKinzie, S, Meehan, K, Mei, JC, Miller, ZW, Minaev, NG, Mioduszewski, S, Mishra, D, Mohanty, B, Mondal, MM, Morozov, DA, Mustafa, MK, Nandi, BK, Nasim, M, Nayak, TK, Nigmatkulov, G, Niida, T, Nogach, LV, Noh, SY, Novak, J, Nurushev, SB, Odyniec, G, Ogawa, A, Oh, K, Okorokov, VA, Jr, OD, Page, BS, Pak, R, Pan, YX, Pandit, Y, Panebratsev, Y, Pawlik, B, Pei, H, Perkins, C, Pile, P, Pluta, J, Poniatowska, K, Porter, J, Posik, M, Poskanzer, AM, Pruthi, NK, Przybycien, M, Putschke, J, Qiu, H, Quintero, A, Ramachandran, S, Ray, RL, Reed, R, Ritter, HG, Roberts, JB, Rogachevskiy, OV, Romero, JL, Ruan, L, Rusnak, J, Rusnakova, O, Sahoo, NR, Sahu, PK, Sakrejda, I, Salur, S, Sandweiss, J, Sarkar, A, Schambach, J, Scharenberg, RP, Schmah, AM, Schmidke, WB, Schmitz, N, Seger, J, Seyboth, P, Shah, N, Shahaliev, E, Shanmuganathan, PV, Shao, M, Sharma, A, Sharma, B, Sharma, MK, Shen, WQ, Shi, Z, Shi, SS, Shou, QY, Sichtermann, EP, Sikora, R, Simko, M, Singha, S, Skoby, MJ, Smirnov, D, Smirnov, N, Solyst, W, Song, L, Sorensen, P, Spinka, HM, Srivastava, B, Stanislaus, TDS, Stepanov, M, Stock, R, Strikhanov, M, Stringfellow, B, Sumbera, M, Summa, B, Sun, Y, Sun, Z, Sun, XM, Surrow, B, Svirida, DN, Tang, Z, Tang, AH, Tarnowsky, T, Tawfik, A, Thadler, J, Thomas, JH, Timmins, AR, Tlusty, D, Todoroki, T, Tokarev, M, Trentalange, S, Tribble, RE, Tribedy, P, Tripathy, SK, Tsai, OD, Ullrich, T, Underwood, DG, Upsal, I, Van Buren, G, Van Nieuwenhuizen, G, Vandenbroucke, M, Varma, R, Vasiliev, AN, Vertesi, R, Videbaek, F, Vokal, S, Voloshin, SA, Vossen, A, Wang, H, Wang, F, Wang, Y, Wang, JS, Wang, G, Webb, JC, Webb, G, Westfall, GD, Wieman, H, Wissink, SW, Witt, R, Wu, Y, Xiao, ZG, Xie, W, Xie, G, Xin, K, Xu, N, Xu, QH, Xu, Z, Xu, J, Xu, H, Xu, YF, Yang, S, Yang, Y, Yang, C, Yang, Q, Ye, Z, Yi, L, Yip, K, Yoo, I-K, Yu, N, Zbroszczyk, H, Zha, W, Zhang, Z, Zhang, JB, Zhang, S, Zhang, XP, Zhang, Y, Zhang, J, Zhao, J, Zhong, C, Zhou, L, Zhu, X, Zoulkarneeva, Y, Zyzak, M, and Collaboration, STAR
- Subjects
Physics ,Nuclear and High Energy Physics ,Time projection chamber ,Chiral Magnetic Wave ,010308 nuclear & particles physics ,Plane (geometry) ,Hadron ,Gamma Correlation ,Small systems ,Star (graph theory) ,01 natural sciences ,Nuclear physics ,0103 physical sciences ,gamma correlation ,Particle ,High Energy Physics::Experiment ,Collisions ,k(K) parameter ,Chiral Magnetic Effect ,Magnetic effect ,Nuclear Experiment ,010306 general physics ,Event (particle physics) ,K(K) Parameter - Abstract
We report recent STAR results on searching for the Chiral Magnetic Effect via measurements of γ correlation and κ K parameter for charged hadrons and identified particle pairs ( ππ , pK , πK , pp , pπ ) in Au+Au collisions at 200 GeV. We compare the κ K parameters with expectations from the AMPT simulations. Sizable γ correlations for charged hadrons, using Time Projection Chamber event plane, in p+Au and d+Au 200 GeV have been observed, and the correlations in these small systems are reduced to near zero when the event planes from forward detectors are used. We will also present our results on the Chiral Magnetic Wave searches from p+Au collisions at 200 GeV.
- Published
- 2017