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Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies
The $v_{3}$ coefficient, obtained using the PbAu data from the CERES detector at the top SPS energy, is presented. The $v_{2}$ is measured over a $p_{T}$ range up to 100 GeV/c in PbPb collisions collected with the CMS detector. The $v_{2}\{2\}$ of charged and strange particles emitted in pp collisio...
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Lenguaje: | eng |
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2016
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Acceso en línea: | http://cds.cern.ch/record/2241150 |
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author | Milosevic, Jovan |
author_facet | Milosevic, Jovan |
author_sort | Milosevic, Jovan |
collection | CERN |
description | The $v_{3}$ coefficient, obtained using the PbAu data from the CERES detector at the top SPS energy, is presented. The $v_{2}$ is measured over a $p_{T}$ range up to 100 GeV/c in PbPb collisions collected with the CMS detector. The $v_{2}\{2\}$ of charged and strange particles emitted in pp collisions shows a mass ordering effect. The $v_{2}\{4\}$ and $v_{2}\{6\}$ are comparable to the $v_{2}\{2\}$, and thus supports the collective nature of the long-range correlations in high-multiplicity pp collisions at 13~TeV. Principle Component Analysis (PCA) of two-particle harmonics ($V_{n\Delta}$) is studied in PbPb and high-multiplicity pPb collisions at the LHC. The factorization breaking of the $V_{n\Delta}$ can be attributed to the effect of initial-state fluctuations (ISF). Using a PCA, the $V_{n\Delta}$ are characterized through the leading and sub-leading modes. The leading modes are essentially equivalent to the $v_{n}\{2\}$. The sub-leading modes represent the largest sources of factorization breaking. |
id | cern-2241150 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2016 |
record_format | invenio |
spelling | cern-22411502019-09-30T06:29:59Zhttp://cds.cern.ch/record/2241150engMilosevic, JovanAzimuthal anisotropies and initial-state fluctuations from SPS to LHC energiesDetectors and Experimental TechniquesThe $v_{3}$ coefficient, obtained using the PbAu data from the CERES detector at the top SPS energy, is presented. The $v_{2}$ is measured over a $p_{T}$ range up to 100 GeV/c in PbPb collisions collected with the CMS detector. The $v_{2}\{2\}$ of charged and strange particles emitted in pp collisions shows a mass ordering effect. The $v_{2}\{4\}$ and $v_{2}\{6\}$ are comparable to the $v_{2}\{2\}$, and thus supports the collective nature of the long-range correlations in high-multiplicity pp collisions at 13~TeV. Principle Component Analysis (PCA) of two-particle harmonics ($V_{n\Delta}$) is studied in PbPb and high-multiplicity pPb collisions at the LHC. The factorization breaking of the $V_{n\Delta}$ can be attributed to the effect of initial-state fluctuations (ISF). Using a PCA, the $V_{n\Delta}$ are characterized through the leading and sub-leading modes. The leading modes are essentially equivalent to the $v_{n}\{2\}$. The sub-leading modes represent the largest sources of factorization breaking.CMS-CR-2016-334oai:cds.cern.ch:22411502016-11-07 |
spellingShingle | Detectors and Experimental Techniques Milosevic, Jovan Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies |
title | Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies |
title_full | Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies |
title_fullStr | Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies |
title_full_unstemmed | Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies |
title_short | Azimuthal anisotropies and initial-state fluctuations from SPS to LHC energies |
title_sort | azimuthal anisotropies and initial-state fluctuations from sps to lhc energies |
topic | Detectors and Experimental Techniques |
url | http://cds.cern.ch/record/2241150 |
work_keys_str_mv | AT milosevicjovan azimuthalanisotropiesandinitialstatefluctuationsfromspstolhcenergies |