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research article

Principal-component analysis of two-particle azimuthal correlations in PbPb and $p\text{Pb}$ collisions at CMS

Sirunyan, A.M.
•
Tumasyan, Armen
•
Adam, Wolfgang
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December 5, 2017
Physical Review C

For the first time a principle-component analysis is used to separate out different orthogonal modes of the two-particle correlation matrix from heavy ion collisions. The analysis uses data from sNN=2.76TeV PbPb and sNN=5.02TeV pPb collisions collected by the CMS experiment at the CERN Large Hadron Collider. Two-particle azimuthal correlations have been extensively used to study hydrodynamic flow in heavy ion collisions. Recently it was shown that the expected factorization of two-particle results into a product of the constituent single-particle anisotropies is broken. The new information provided by these modes may shed light on the breakdown of flow factorization in heavy ion collisions. The first two modes (“leading” and “subleading”) of two-particle correlations are presented for elliptical and triangular anisotropies in PbPb and pPb collisions as a function of pT over a wide range of event activity. The leading mode is found to be essentially equivalent to the anisotropy harmonic previously extracted from two-particle correlation methods. The subleading mode represents a new experimental observable and is shown to account for a large fraction of the factorization breaking recently observed at high transverse momentum. The principle-component analysis technique was also applied to multiplicity fluctuations. These also show a subleading mode. The connection of these new results to previous studies of factorization is discussed.

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Type
research article
DOI
10.1103/PhysRevC.96.064902
ArXiv ID

1708.07113

Author(s)
Sirunyan, A.M.
Tumasyan, Armen
Adam, Wolfgang
Ambrogi, Federico
Asilar, Ece
Bergauer, Thomas
Brandstetter, Johannes
Brondolin, Erica
Dragicevic, Marko
Erö, Janos
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Date Issued

2017-12-05

Published in
Physical Review C
Volume

96

Issue

6

Article Number

064902

Subjects

angular correlation: two-particle

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principal component analysis

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factorization

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flow

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triangulation

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anisotropy

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initial state: fluctuation

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transverse momentum: high

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multiplicity: fluctuation

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hydrodynamics

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constituent

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background

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lead

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p nucleus

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CMS

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CERN LHC Coll

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experimental results

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2760 GeV/nucleon5020 GeV/nucleon

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LPHE  
Available on Infoscience
February 17, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/165800
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