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Di-hadron correlations with identified leading hadrons in 200 GeV Au + Au and d plus Au collisions at STAR

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Title Di-hadron correlations with identified leading hadrons in 200 GeV Au + Au and d plus Au collisions at STAR
 
Creator ADAMCZYK, L
ADKINS, JK
AGAKISHIEV, G
AGGARWAL, MM
AHAMMED, Z
ALEKSEEV, I
APARIN, A
ARKHIPKIN, D
ASCHENAUER, EC
AVERICHEV, GS
BAI, X
BAIRATHI, V
BANERJEE, A
BELLWIED, R
BHASIN, A
BHATI, AK
BHATTARAI, P
BIELCIK, J
BIELCIKOVA, J
BLAND, LC
BORDYUZHIN, G
BOUCHET, J
BRANDENBURG, D
BRANDIN, AV
BUNZAROV, I
BUTTERWORTH, J
CAINES, H
SANCHEZ, MCDLB
CAMPBELL, JM
CEBRA, D
CERVANTES, MC
CHAKABERIA, I
CHALOUPKA, P
CHANG, Z
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, A
HAMED, A
HAQUE, R
HARRIS, JW
HE, L
HEPPELMANN, S
HEPPELMANN, S
HIRSCH, A
HOFFMANN, GW
HOFMAN, DJ
HORVAT, S
HUANG, T
HUANG, B
HUANG, HZ
HUANG, X
HUCK, P
HUMANIC, TJ
IGO, G
JACOBS, WW
JANG, H
JIA, J
JIANG, K
JUDD, EG
KABANA, S
KALINKIN, D
KANG, K
KAUDER, K
KE, HW
KEANE, D
KECHECHYAN, A
KHAN, ZH
KIKOLA, DP
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, W
LI, ZM
LI, Y
LI, C
LI, X
LISA, MA
LIU, F
LJUBICIC, T
LLOPE, WJ
LOMNITZ, M
LONGACRE, RS
LUO, X
MA, GL
MA, YG
MA, R
MA, L
MAGDY, N
MAJKA, R
MANION, A
MARGETIS, S
MARKERT, C
MASUI, H
MATIS, HS
MCDONALD, D
MEEHAN, K
MEI, JC
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, V
OLVITT, D
PAGE, BS
PAK, R
PAN, YX
PANDIT, Y
PANEBRATSEV, Y
PAWLIK, B
PEI, H
PERKINS, C
PETERSON, A
PILE, P
PLUTA, J
PONIATOWSKA, K
PORTER, J
POSIK, M
POSKANZER, AM
PRUTHI, NK
PUTSCHKE, J
QIU, H
QUINTERO, A
RAMACHANDRAN, S
RANIWALA, R
RANIWALA, S
RAY, RL
RITTER, HG
ROBERTS, JB
ROGACHEVSKIY, OV
ROMERO, JL
ROY, A
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, B
SHARMA, MK
SHEN, WQ
SHI, SS
SHOU, QY
SICHTERMANN, EP
SIKORA, R
SIMKO, M
SINGHA, S
SKOBY, MJ
SMIRNOV, N
SMIRNOV, D
SONG, L
SORENSEN, P
SPINKA, HM
SRIVASTAVA, B
STANISLAUS, TDS
STEPANOV, M
STRIKHANOV, M
STRINGFELLOW, B
SUMBERA, M
SUMMA, B
SUN, Y
SUN, Z
SUN, XM
SUN, X
SURROW, B
SVIRIDA, DN
SZELEZNIAK, MA
TANG, AH
TANG, Z
TARNOWSKY, T
TAWFIK, A
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
VIYOGI, YP
VOKAL, S
VOLOSHIN, SA
VOSSEN, A
WANG, JS
WANG, F
WANG, H
WANG, G
WANG, Y
WANG, Y
WEBB, G
WEBB, JC
WEN, L
WESTFALL, GD
WIEMAN, H
WISSINK, SW
WITT, R
WU, YF
WU
XIAO, ZG
XIE, W
XIN, K
XU, H
XU, Z
XU, QH
XU, YF
XU, N
YANG, S
YANG, Y
YANG, Q
YANG, Y
YANG, C
YANG, Y
YE, Z
YEPES, P
YI, L
YIP, K
YOO, IK
YU, N
ZBROSZCZYK, H
ZHA, W
ZHANG, Y
ZHANG, Z
ZHANG, JB
ZHANG, J
ZHANG, XP
ZHANG, S
ZHANG, J
ZHAO, J
ZHONG, C
ZHOU, L
ZHU, X
ZOULKARNEEVA, Y
 
Subject PB-PB COLLISIONS
QUARK-GLUON PLASMA
TRANSVERSE-MOMENTUM
ROOT-S(NN)=2.76 TEV
NUCLEUS COLLISIONS
SPECTRA
PP
COLLABORATION
HADRONIZATION
PERSPECTIVE
 
Description The STAR Collaboration presents for the first time two-dimensional di-hadron correlations with identified leading hadrons in 200 GeV central Au+Au and minimum-bias d+Au collisions to explore hadronization mechanisms in the quark gluon plasma. The enhancement of the jet-like yield for leading pions in Au + Au data with respect to the d + Au reference and the absence of such an enhancement for leading non-pions (protons and kaons) are discussed within the context of a quark recombination scenario. The correlated yield at large angles, specifically in the ridge region, is found to be significantly higher for leading non-pions than pions. The consistencies of the constituent quark scaling, azimuthal harmonic model and a mini-jet modification model description of the data are tested, providing further constraints on hadronization. (C) 2015 The Authors. Published by Elsevier B.V.
 
Publisher ELSEVIER SCIENCE BV
 
Date 2016-01-15T05:00:49Z
2016-01-15T05:00:49Z
2015
 
Type Article
 
Identifier PHYSICS LETTERS B, 751,233-240
0370-2693
1873-2445
http://dx.doi.org/10.1016/j.physletb.2015.10.037
http://dspace.library.iitb.ac.in/jspui/handle/100/17821
 
Language en