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Cited 131 time in webofscience Cited 139 time in scopus
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Evidence for transverse-momentum- and pseudorapidity-dependent event-plane fluctuations in PbPb and pPb collisionsopen access

Authors
Khachatryan, VSirunyan, AMTumasyan, AAdam, WAsilar, EBergauer, TBrandstetter, JDragicevic, MEro, JKim, Tae Jeong
Issue Date
Sep-2015
Publisher
AMER PHYSICAL SOC
Citation
PHYSICAL REVIEW C, v.92, no.3, pp.1 - 26
Indexed
SCIE
SCOPUS
Journal Title
PHYSICAL REVIEW C
Volume
92
Number
3
Start Page
1
End Page
26
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/142920
DOI
10.1103/PhysRevC.92.034911
ISSN
2469-9985
Abstract
A systematic study of the factorization of long-range azimuthal two-particle correlations into a product of single-particle anisotropies is presented as a function of pT and nu of both particles and as a function of the particle multiplicity in PbPb and pPb collisions. The data were taken with the CMS detector for PbPb collisions at root sNN = 2.76 TeV and pPb collisions at root sNN = 5.02 TeV, covering a very wide range of multiplicity. Factorization is observed to be broken as a function of both particle pT and nu. When measured with particles of different pT, the magnitude of the factorization breakdown for the second Fourier harmonic reaches 20% for very central PbPb collisions but decreases rapidly as the multiplicity decreases. The data are consistent with viscous hydrodynamic predictions, which suggest that the effect of factorization breaking is mainly sensitive to the initial-state conditions rather than to the transport properties (e.g., shear viscosity) of the medium. The factorization breakdown is also computed with particles of different nu. The effect is found to be weakest for mid-central PbPb events but becomes larger for more central or peripheral PbPb collisions, and also for very-high-multiplicity pPb collisions. The nu-dependent factorization data provide new insights to the longitudinal evolution of the medium formed in heavy ion collisions.
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