Charged and strange hadron elliptic flow in Cu + Cu collisions at √sNN = 62.4 and 200 GeV

B. I. Abelev,Madan M. Aggarwal,Zubayer Ahammed,A. V. Alakhverdyants,I. G. Alekseev,B. D. Anderson,D. Arkhipkin,G. S. Averichev,J. Balewski,Lee Stuart Barnby,S. Baumgart,D. R. Beavis,R. Bellwied,Michael Joseph Betancourt,Russell Richard Betts,Anju Bhasin,A. K. Bhati,H. Bichsel,Jaroslav Bielcik,Jana Bielcikova,B. Biritz,L. C. Bland,B. E. Bonner,J. Bouchet,Ermes Braidot,A. V. Brandin,A. Bridgeman,Elena Bruna,S. Bueltmann,I. Bunzarov,T. P. Burton,X. Z. Cai,H. Caines,M. Calderon De La Barca Sanchez,O. Catu,D. Cebra,R. Cendejas,M. C. Cervantes,Z. Chajecki,P. Chaloupka,Sukalyan Chattopadhyay,H. F. Chen,J. H. Chen,Jake Y. Chen,J. Cheng,M. Cherney,A. Chikanian,Ki-Seok Choi,W. Christie,P. Chung,R. F. Clarke,M. J. M. Codrington,R. Corliss,J. G. Cramer,H. J. Crawford,Debasish Das,S. Dash,A. Davila Leyva,L. C. De Silva,R. R. Debbe,T. G. Dedovich,M. DePhillips,A. A. Derevschikov,R. Derradi de Souza,L. Didenko,P. Djawotho,S. M. Dogra,X. Dong,J. L. Drachenberg,J. E. Draper,J. C. Dunlop,M. R. Dutta Mazumdar,L. G. Efimov,E. Elhalhuli,M. Elnimr,J. Engelage,G. Eppley,B. Erazmus,M. Estienne,L. Eun,Olga Evdokimov,P. Fachini,R. Fatemi,J. Fedorisin,R. G. Fersch,P. Filip,E. Finch,V. Fine,Y. Fisyak,C. A. Gagliardi,D. R. Gangadharan,M. S. Ganti,E. J. Garcia-Solis,A. Geromitsos,Frank Jm Geurts,V. Ghazikhanian,Premomoy Ghosh,Y. N. Gorbunov,A. Gordon,O. G. Grebenyuk,D. Grosnick,B. Grube,S. M. Guertin,Anik Gupta, Neeraj Gupta,W. Guryn,B. Haag,A. Hamed,L-X. Han,J. W. Harris,James Prewitt Hays-Wehle,M. Heinz,S. Heppelmann,A. S. Hirsch,E. Hjort,A. M. Hoffman,Gerald W Hoffmann,David Jonathan Hofman,R. S. Hollis,H. Z. Huang,T. J. Humanic,L. Huo,G. Igo,A. Iordanova,Peter Martin Jacobs,W. W. Jacobs,Petr Jákl,Chitrasen Jena,Feng Jin,C. L. Jones,Peter Graham Jones,J. Joseph,E. G. Judd,S. Kabana,K. Kajimoto,K. Kang,J. Kapitan,K. Kauder,D. Keane,A. Kechechyan,D. Kettler,D. P. Kikola,J. Kiryluk,Adam Ryszard Kisiel,S. R. Klein,A. G. Knospe,A. Kocoloski,D. D. Koetke,Thorsten Sven Kollegger,J. Konzer,M. Kopytine,I. Koralt,L. Koroleva,Wolfgang Korsch,L. Kotchenda,V. Kouchpil,P. Kravtsov,K. Krueger,M. Krus,Lokesh Kumar,P. Kurnadi,M. A.C. Lamont,J. M. Landgraf,S. LaPointe,J. Lauret,A. Lebedev,R. Lednicky,C-H. Lee,Jongmin Lee,William Axel Leight,M. J. LeVine,C-Q. Li,L. Li,N. Li,Wei Li,Xingguo Li,Yan Li,Zhibing Li,G. Lin,S. J. Lindenbaum,M. A. Lisa,F. Liu,Hongfang Liu,Jie Liu,T. Ljubicic,W. J. Llope,R. S. Longacre,W. A. Love, Y. P. Lu,Guo-Liang Ma,Yinina Ma,D. P. Mahapatra,R. D. Majka,O. I. Mall,L. K. Mangotra,R. Manweiler,S. Margetis,Christina Markert,H. Masui,H. S. Matis,Yu A. Matulenko,Donald M. McDonald,T. S. McShane,A. P. Meschanin,Ross Milner,N. G. Minaev,S. Mioduszewski,Andre Mischke,M. K. Mitrovski,Bedangadas Mohanty,Mitali Mondal,B. Morozov,D. A. Morozov,Marcelo Gameiro Munhoz,Basanta Kumar Nandi,Christine Nattrass,T. K. Nayak,J. M. Nelson,Pawan Kumar Netrakanti,M. J. Ng,L. V. Nogach,S. B. Nurushev,G. Odyniec,A. Ogawa,H. Okada,Vitaly Okorokov,D. L. Olson,M. Pachr,B. S. Page,S. K. Pal,Y. Pandit,Y. Panebratsev,T. Pawlak,T. Peitzmann,V. Perevoztchikov,C. Perkins,W. Peryt,S. C. Phatak,P. Pile,Mirko Planinic,Mateusz Andrzej Ploskon,J. Pluta,Donika Plyku,Nikola Poljak,A. M. Poskanzer,B. V.K.S. Potukuchi,C. B. Powell,D. J. Prindle,Claude Andre Pruneau,N. K. Pruthi,P. R. Pujahari,Jorn Henning Putschke,Rashmi Raniwala,Sudhir Raniwala,R. L. Ray,R. P. Redwine, Rolf K. Reed,J. M. Rehberg,H. G. Ritter,Jay Roberts,O. V. Rogachevskiy,J. L. Romero,Andrew Rose,C. Roy,Lijuan Ruan,Raghunath Sahoo,S. Sakai,I. Sakrejda,T. Sakuma,Sevil Salur,J. Sandweiss,E. Sangaline,J. Schambach,R. P. Scharenberg,N. Schmitz,T. R. Schuster,J. Seele,Janet Elizabeth Seger,I. Selyuzhenkov,P. Seyboth,E. Shahaliev,M. Shao,M. Sharma,S. S. Shi,X. H. Shi,E. P. Sichtermann,Frank Simon,R. N. Singaraju,M. J. Skoby,Nikolai Smirnov,P. Sorensen,J. Sowinski,H. M. Spinka,B. K. Srivastava,T. D. S. Stanislaus,D. Staszak,Justin Stevens,R. Stock,M. Strikhanov,B. Stringfellow,Alexandre Alarcon Do Passo Suaide,M. C. Suarez,N. L. Subba,Michal Sumbera,Xiangming Sun,Y. J. Sun, Z. J. Sun,Bernd Surrow,D. N. Svirida,T. J. M. Symons,A. Szanto de Toledo,J. Takahashi,A. H. Tang,Zebo Tang,L. H. Tarini,T. Tarnowsky,D. Thein,J. H. Thomas,Jifa Tian,A. R. Timmins,Sergey Timoshenko,D. Tlusty,M. Tokarev,V. N. Tram,S. Trentalange,R. E. Tribble,O. D. Tsai,J. Ulery,T. Ullrich,D. G. Underwood,G. Van Buren,M. van Leeuwen,G. Van Nieuwenhuizen,J. A. Vanfossen,R. Varma,G. M.S. Vasconcelos,Andrey Vasiliev,F. Videbæk,Y. P. Viyogi,S. Vokal,Sergey Voloshin,M. Wada,Matthew Walker,Fuqiang Wang,G. Wang, Haiyan Wang,J. S. Wang,Q. Wang,X. L. Wang,Y. Wang,G. Webb,J. C. Webb,G. D. Westfall,C. A. Whitten,H. H. Wieman,E. Wingfield,S. W. Wissink,R. Witt,Y. F. Wu,Wei Xie,N. Xu,Q. H. Xu,W. Xu,Yong Xu,Z. Xu,Li Xue,Y. Yang,P. Yepes,K. Yip,I. K. Yoo,Qian Yue,M. Zawisza,Hanna Paulina Zbroszczyk,W. L. Zhan, S. Q. Zhang,W. M. Zhang,Xuan Zhang,Yi Zhang, Zhenyu Zhang,J. Zhao,C. Zhong,Jing Zhou,W. Zhou,Xiaofeng Zhu,Y. H. Zhu,R. Zoulkarneev,Y. Zoulkarneeva

Physical Review C(2010)

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摘要
We present the results of an elliptic flow, v(2), analysis of Cu + Cu collisions recorded with the solenoidal tracker detector (STAR) at the BNL Relativistic Heavy Ion Collider at root s(NN) = 62.4 and 200 GeV. Elliptic flow as a function of transverse momentum, v(2)(p(T)), is reported for different collision centralities for charged hadrons h(+/-) and strangeness-ontaining hadrons K(S)(0), Lambda, Xi, and phi in the midrapidity region vertical bar eta vertical bar < 1.0. Significant reduction in systematic uncertainty of the measurement due to nonflow effects has been achieved by correlating particles at midrapidity, vertical bar eta vertical bar < 1.0, with those at forward rapidity, 2.5 < vertical bar eta vertical bar < 4.0. We also present azimuthal correlations in p + p collisions at root s = 200 GeV to help in estimating nonflow effects. To study the system-size dependence of elliptic flow, we present a detailed comparison with previously published results from Au + Au collisions at root s(NN) = 200 GeV. We observe that v(2)(p(T)) of strange hadrons has similar scaling properties as were first observed in Au + Au collisions, that is, (i) at low transverse momenta, p(T) < 2 GeV/c, v(2) scales with transverse kinetic energy, m(T) - m, and (ii) at intermediate p(T), 2 < p(T) < 4 GeV/c, it scales with the number of constituent quarks, n(q.) We have found that ideal hydrodynamic calculations fail to reproduce the centrality dependence of v(2)(p(T)) for K(S)(0) and Lambda. Eccentricity scaled v(2) values, v(2)/epsilon, are larger in more central collisions, suggesting stronger collective flow develops in more central collisions. The comparison with Au + Au collisions, which go further in density, shows that v(2)/epsilon depends on the system size, that is, the number of participants N(part). This indicates that the ideal hydrodynamic limit is not reached in Cu + Cu collisions, presumably because the assumption of thermalization is not attained.
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interactions,scaling,bosons,transition elements,elements,thermalization,quarks,density,physical properties,hadrons,fermions,linear momentum,metals,elliptic flow,elementary particles,mesons,copper,kinetic energy,mathematical models,statistical models,energy,evaluation,gold
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