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Growth of long range forward-backward multiplicity correlations with centrality in Au + Au collisions at square root of sNN = 200 GeV.

Authors :
Abelev BI
Aggarwal MM
Ahammed Z
Anderson BD
Arkhipkin D
Averichev GS
Balewski J
Barannikova O
Barnby LS
Baudot J
Baumgart S
Beavis DR
Bellwied R
Benedosso F
Betancourt MJ
Betts RR
Bhasin A
Bhati AK
Bichsel H
Bielcik J
Bielcikova J
Biritz B
Bland LC
Bombara M
Bonner BE
Botje M
Bouchet J
Braidot E
Brandin AV
Bruna E
Bueltmann S
Burton TP
Bystersky M
Cai XZ
Caines H
Calderón de la Barca Sánchez M
Catu O
Cebra D
Cendejas R
Cervantes MC
Chajecki Z
Chaloupka P
Chattopadhyay S
Chen HF
Chen JH
Chen JY
Cheng J
Cherney M
Chikanian A
Choi KE
Christie W
Clarke RF
Codrington MJ
Corliss R
Cormier TM
Cosentino MR
Cramer JG
Crawford HJ
Das D
Dash S
Daugherity M
De Silva LC
Dedovich TG
DePhillips M
Derevschikov AA
Derradi de Souza R
Didenko L
Djawotho P
Dogra SM
Dong X
Drachenberg JL
Draper JE
Du F
Dunlop JC
Dutta Mazumdar MR
Edwards WR
Efimov LG
Elhalhuli E
Elnimr M
Emelianov V
Engelage J
Eppley G
Erazmus B
Estienne M
Eun L
Fachini P
Fatemi R
Fedorisin J
Feng A
Filip P
Finch E
Fine V
Fisyak Y
Gagliardi CA
Gaillard L
Gangadharan DR
Ganti MS
Garcia-Solis EJ
Geromitsos A
Geurts F
Ghazikhanian V
Ghosh P
Gorbunov YN
Gordon A
Grebenyuk O
Grosnick D
Grube B
Guertin SM
Guimaraes KS
Gupta A
Gupta N
Guryn W
Haag B
Hallman TJ
Hamed A
Harris JW
He W
Heinz M
Heppelmann S
Hippolyte B
Hirsch A
Hjort E
Hoffman AM
Hoffmann GW
Hofman DJ
Hollis RS
Huang HZ
Humanic TJ
Huo L
Igo G
Iordanova A
Jacobs P
Jacobs WW
Jakl P
Jena C
Jin F
Jones CL
Jones PG
Joseph J
Judd EG
Kabana S
Kajimoto K
Kang K
Kapitan J
Keane D
Kechechyan A
Kettler D
Khodyrev VY
Kikola DP
Kiryluk J
Kisiel A
Knospe AG
Kocoloski A
Koetke DD
Kopytine M
Korsch W
Kotchenda L
Kouchpil V
Kravtsov P
Kravtsov VI
Krueger K
Krus M
Kuhn C
Kumar L
Kurnadi P
Lamont MA
Landgraf JM
LaPointe S
Lauret J
Lebedev A
Lednicky R
Lee CH
Lee JH
Leight W
Levine MJ
Li N
Li C
Li Y
Lin G
Lindenbaum SJ
Lisa MA
Liu F
Liu J
Liu L
Ljubicic T
Llope WJ
Longacre RS
Love WA
Lu Y
Ludlam T
Ma GL
Ma YG
Mahapatra DP
Majka R
Mall OI
Mangotra LK
Manweiler R
Margetis S
Markert C
Matis HS
Matulenko YA
McShane TS
Meschanin A
Milner R
Minaev NG
Mioduszewski S
Mischke A
Mitchell J
Mohanty B
Morozov DA
Munhoz MG
Nandi BK
Nattrass C
Nayak TK
Nelson JM
Netrakanti PK
Ng MJ
Nogach LV
Nurushev SB
Odyniec G
Ogawa A
Okada H
Okorokov V
Olson D
Pachr M
Page BS
Pal SK
Pandit Y
Panebratsev Y
Pawlak T
Peitzmann T
Perevoztchikov V
Perkins C
Peryt W
Phatak SC
Planinic M
Pluta J
Poljak N
Poskanzer AM
Potukuchi BV
Prindle D
Pruneau C
Pruthi NK
Pujahari PR
Putschke J
Raniwala R
Raniwala S
Redwine R
Reed R
Ridiger A
Ritter HG
Roberts JB
Rogachevskiy OV
Romero JL
Rose A
Roy C
Ruan L
Russcher MJ
Sahoo R
Sakrejda I
Sakuma T
Salur S
Sandweiss J
Sarsour M
Schambach J
Scharenberg RP
Schmitz N
Seger J
Selyuzhenkov I
Seyboth P
Shabetai A
Shahaliev E
Shao M
Sharma M
Shi SS
Shi XH
Sichtermann EP
Simon F
Singaraju RN
Skoby MJ
Smirnov N
Snellings R
Sorensen P
Sowinski J
Spinka HM
Srivastava B
Stadnik A
Stanislaus TD
Staszak D
Strikhanov M
Stringfellow B
Suaide AA
Suarez MC
Subba NL
Sumbera M
Sun XM
Sun Y
Sun Z
Surrow B
Symons TJ
Szanto de Toledo A
Takahashi J
Tang AH
Tang Z
Tarnowsky T
Thein D
Thomas JH
Tian J
Timmins AR
Timoshenko S
Tlusty D
Tokarev M
Tram VN
Trattner AL
Trentalange S
Tribble RE
Tsai OD
Ulery J
Ullrich T
Underwood DG
Van Buren G
van Leeuwen M
Vander Molen AM
Vanfossen JA Jr
Varma R
Vasconcelos GM
Vasilevski IM
Vasiliev AN
Videbaek F
Vigdor SE
Viyogi YP
Vokal S
Voloshin SA
Wada M
Walker M
Wang F
Wang G
Wang JS
Wang Q
Wang X
Wang XL
Wang Y
Webb G
Webb JC
Westfall GD
Whitten C Jr
Wieman H
Wissink SW
Witt R
Wu Y
Xie W
Xu N
Xu QH
Xu Y
Xu Z
Yang Y
Yepes P
Yoo IK
Yue Q
Zawisza M
Zbroszczyk H
Zhan W
Zhang S
Zhang WM
Zhang XP
Zhang Y
Zhang ZP
Zhao Y
Zhong C
Zhou J
Zoulkarneev R
Zoulkarneeva Y
Zuo JX
Source :
Physical review letters [Phys Rev Lett] 2009 Oct 23; Vol. 103 (17), pp. 172301. Date of Electronic Publication: 2009 Oct 21.
Publication Year :
2009

Abstract

Forward-backward multiplicity correlation strengths have been measured with the STAR detector for Au + Au and p + p collisions at square root of s(NN) = 200 GeV. Strong short- and long-range correlations (LRC) are seen in central Au + Au collisions. The magnitude of these correlations decrease with decreasing centrality until only short-range correlations are observed in peripheral Au + Au collisions. Both the dual parton model (DPM) and the color glass condensate (CGC) predict the existence of the long-range correlations. In the DPM, the fluctuation in the number of elementary (parton) inelastic collisions produces the LRC. In the CGC, longitudinal color flux tubes generate the LRC. The data are in qualitative agreement with the predictions of the DPM and indicate the presence of multiple parton interactions.

Details

Language :
English
ISSN :
1079-7114
Volume :
103
Issue :
17
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
19905749
Full Text :
https://doi.org/10.1103/PhysRevLett.103.172301