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Search for the Chiral Magnetic Effect via Charge-Dependent Azimuthal Correlations Relative to Spectator and Participant Planes in Au+Au Collisions at sqrt[s_{NN}]=200  GeV.

Authors :
Abdallah MS
Adam J
Adamczyk L
Adams JR
Adkins JK
Agakishiev G
Aggarwal I
Aggarwal MM
Ahammed Z
Alekseev I
Anderson DM
Aparin A
Aschenauer EC
Ashraf MU
Atetalla FG
Attri A
Averichev GS
Bairathi V
Baker W
Ball Cap JG
Barish K
Behera A
Bellwied R
Bhagat P
Bhasin A
Bielcik J
Bielcikova J
Bordyuzhin IG
Brandenburg JD
Brandin AV
Bunzarov I
Butterworth J
Cai XZ
Caines H
Calderón de la Barca Sánchez M
Cebra D
Chakaberia I
Chaloupka P
Chan BK
Chang FH
Chang Z
Chankova-Bunzarova N
Chatterjee A
Chattopadhyay S
Chen D
Chen J
Chen JH
Chen X
Chen Z
Cheng J
Chevalier M
Choudhury S
Christie W
Chu X
Crawford HJ
Csanád M
Daugherity M
Dedovich TG
Deppner IM
Derevschikov AA
Dhamija A
Di Carlo L
Didenko L
Dong X
Drachenberg JL
Dunlop JC
Elsey N
Engelage J
Eppley G
Esumi S
Ewigleben A
Eyser O
Fatemi R
Fawzi FM
Fazio S
Federic P
Fedorisin J
Feng CJ
Feng Y
Filip P
Finch E
Fisyak Y
Francisco A
Fu C
Fulek L
Gagliardi CA
Galatyuk T
Geurts F
Ghimire N
Gibson A
Gopal K
Gou X
Grosnick D
Gupta A
Guryn W
Hamad AI
Hamed A
Han Y
Harabasz S
Harasty MD
Harris JW
Harrison H
He S
He W
He XH
He Y
Heppelmann S
Heppelmann S
Herrmann N
Hoffman E
Holub L
Hu Y
Huang H
Huang HZ
Huang SL
Huang T
Huang X
Huang Y
Humanic TJ
Igo G
Isenhower D
Jacobs WW
Jena C
Jentsch A
Ji Y
Jia J
Jiang K
Ju X
Judd EG
Kabana S
Kabir ML
Kagamaster S
Kalinkin D
Kang K
Kapukchyan D
Kauder K
Ke HW
Keane D
Kechechyan A
Khyzhniak YV
Kikoła DP
Kim C
Kimelman B
Kincses D
Kisel I
Kiselev A
Knospe AG
Kochenda L
Kosarzewski LK
Kramarik L
Kravtsov P
Kumar L
Kumar S
Kunnawalkam Elayavalli R
Kwasizur JH
Lan S
Landgraf JM
Lauret J
Lebedev A
Lednicky R
Lee JH
Leung YH
Li C
Li C
Li W
Li X
Li Y
Liang X
Liang Y
Licenik R
Lin T
Lin Y
Lisa MA
Liu F
Liu H
Liu H
Liu P
Liu T
Liu X
Liu Y
Liu Z
Ljubicic T
Llope WJ
Longacre RS
Loyd E
Lukow NS
Luo X
Ma L
Ma R
Ma YG
Magdy N
Majka R
Mallick D
Margetis S
Markert C
Matis HS
Mazer JA
Minaev NG
Mioduszewski S
Mohanty B
Mondal MM
Mooney I
Morozov DA
Mukherjee A
Nagy M
Nam JD
Nasim M
Nayak K
Neff D
Nelson JM
Nemes DB
Nie M
Nigmatkulov G
Niida T
Nishitani R
Nogach LV
Nonaka T
Nunes AS
Odyniec G
Ogawa A
Oh S
Okorokov VA
Page BS
Pak R
Pandav A
Pandey AK
Panebratsev Y
Parfenov P
Pawlik B
Pawlowska D
Pei H
Perkins C
Pinsky L
Pintér RL
Pluta J
Pokhrel BR
Ponimatkin G
Porter J
Posik M
Prozorova V
Pruthi NK
Przybycien M
Putschke J
Qiu H
Quintero A
Racz C
Radhakrishnan SK
Raha N
Ray RL
Reed R
Ritter HG
Robotkova M
Rogachevskiy OV
Romero JL
Ruan L
Rusnak J
Sahoo NR
Sako H
Salur S
Sandweiss J
Sato S
Schmidke WB
Schmitz N
Schweid BR
Seck F
Seger J
Sergeeva M
Seto R
Seyboth P
Shah N
Shahaliev E
Shanmuganathan PV
Shao M
Shao T
Sheikh AI
Shen D
Shi SS
Shi Y
Shou QY
Sichtermann EP
Sikora R
Simko M
Singh J
Singha S
Skoby MJ
Smirnov N
Söhngen Y
Solyst W
Sorensen P
Spinka HM
Srivastava B
Stanislaus TDS
Stefaniak M
Stewart DJ
Strikhanov M
Stringfellow B
Suaide AAP
Sumbera M
Summa B
Sun XM
Sun X
Sun Y
Sun Y
Surrow B
Svirida DN
Sweger ZW
Szymanski P
Tang AH
Tang Z
Taranenko A
Tarnowsky T
Thomas JH
Timmins AR
Tlusty D
Todoroki T
Tokarev M
Tomkiel CA
Trentalange S
Tribble RE
Tribedy P
Tripathy SK
Truhlar T
Trzeciak BA
Tsai OD
Tu Z
Ullrich T
Underwood DG
Upsal I
Van Buren G
Vanek J
Vasiliev AN
Vassiliev I
Verkest V
Videbæk F
Vokal S
Voloshin SA
Wang F
Wang G
Wang JS
Wang P
Wang Y
Wang Y
Wang Z
Webb JC
Weidenkaff PC
Wen L
Westfall GD
Wieman H
Wissink SW
Wu J
Wu Y
Xi B
Xiao ZG
Xie G
Xie W
Xu H
Xu N
Xu QH
Xu Y
Xu Z
Xu Z
Yang C
Yang Q
Yang S
Yang Y
Ye Z
Ye Z
Yi L
Yip K
Yu Y
Zbroszczyk H
Zha W
Zhang C
Zhang D
Zhang S
Zhang S
Zhang XP
Zhang Y
Zhang Y
Zhang Y
Zhang ZJ
Zhang Z
Zhang Z
Zhao J
Zhou C
Zhu X
Zhu Z
Zurek M
Zyzak M
Source :
Physical review letters [Phys Rev Lett] 2022 Mar 04; Vol. 128 (9), pp. 092301.
Publication Year :
2022

Abstract

The chiral magnetic effect (CME) refers to charge separation along a strong magnetic field due to imbalanced chirality of quarks in local parity and charge-parity violating domains in quantum chromodynamics. The experimental measurement of the charge separation is made difficult by the presence of a major background from elliptic azimuthal anisotropy. This background and the CME signal have different sensitivities to the spectator and participant planes, and could thus be determined by measurements with respect to these planes. We report such measurements in Au+Au collisions at a nucleon-nucleon center-of-mass energy of 200 GeV at the Relativistic Heavy-Ion Collider. It is found that the charge separation, with the flow background removed, is consistent with zero in peripheral (large impact parameter) collisions. Some indication of finite CME signals is seen in midcentral (intermediate impact parameter) collisions. Significant residual background effects may, however, still be present.

Details

Language :
English
ISSN :
1079-7114
Volume :
128
Issue :
9
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
35302834
Full Text :
https://doi.org/10.1103/PhysRevLett.128.092301