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ALICE data in the framework of the Color String Percolation Model
Possible phase transition of strongly interacting matter from hadron to a quark-gluon plasmastate have in the past received considerable interest. The clustering of color sources providesa framework of the partonic interactions in the initial stage of the collisions. The onset of de-confinement tran...
Autores principales: | , , , , , |
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Lenguaje: | eng |
Publicado: |
SISSA
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.22323/1.350.0004 http://cds.cern.ch/record/2759163 |
_version_ | 1780970277994233856 |
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author | Mishra, Aditya Nath Cuatle, Eleazar Paic, Guy Pajares, Carlos Scharenberg, Rolf Srivastava, Brijesh |
author_facet | Mishra, Aditya Nath Cuatle, Eleazar Paic, Guy Pajares, Carlos Scharenberg, Rolf Srivastava, Brijesh |
author_sort | Mishra, Aditya Nath |
collection | CERN |
description | Possible phase transition of strongly interacting matter from hadron to a quark-gluon plasmastate have in the past received considerable interest. The clustering of color sources providesa framework of the partonic interactions in the initial stage of the collisions. The onset of de-confinement transition is identified by the spanning percolation cluster in 2D percolation. Inthe present work we have analyzed the transverse momentum spectra of charged particles inhigh multiplicity pp collisions at LHC energies $\sqrt{s}=05.02$ and 13 TeV published by the ALICECollaboration using the Color String Percolation Model (CSPM). For heavy ions $PbPb$ at $\sqrt{^s{NN}}$= 2.76 and 5.02 TeV along with $X_eX_e$ at $\sqrt{^s{NN}}$ = 5.44 TeV have been analyzed.The thermodynamical quantities, the temperature, energy density, and the shear viscosity to en-tropy density ratio (η/s) are obtained. It was observed that the inverse of (η/s) represents thetrace anomaly ∆ = (ε − 3P)/$T^4$ . Results are in agreement with the Lattice Quantum ChromoDynamics(LQCD) simulations. Thus the clustering of color sources has a clear physical basisalthough it cannot be deduced directly from QCD. |
id | oai-inspirehep.net-1769889 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
publisher | SISSA |
record_format | invenio |
spelling | oai-inspirehep.net-17698892021-03-26T22:19:10Zdoi:10.22323/1.350.0004http://cds.cern.ch/record/2759163engMishra, Aditya NathCuatle, EleazarPaic, GuyPajares, CarlosScharenberg, RolfSrivastava, BrijeshALICE data in the framework of the Color String Percolation ModelParticle Physics - ExperimentNuclear Physics - ExperimentPossible phase transition of strongly interacting matter from hadron to a quark-gluon plasmastate have in the past received considerable interest. The clustering of color sources providesa framework of the partonic interactions in the initial stage of the collisions. The onset of de-confinement transition is identified by the spanning percolation cluster in 2D percolation. Inthe present work we have analyzed the transverse momentum spectra of charged particles inhigh multiplicity pp collisions at LHC energies $\sqrt{s}=05.02$ and 13 TeV published by the ALICECollaboration using the Color String Percolation Model (CSPM). For heavy ions $PbPb$ at $\sqrt{^s{NN}}$= 2.76 and 5.02 TeV along with $X_eX_e$ at $\sqrt{^s{NN}}$ = 5.44 TeV have been analyzed.The thermodynamical quantities, the temperature, energy density, and the shear viscosity to en-tropy density ratio (η/s) are obtained. It was observed that the inverse of (η/s) represents thetrace anomaly ∆ = (ε − 3P)/$T^4$ . Results are in agreement with the Lattice Quantum ChromoDynamics(LQCD) simulations. Thus the clustering of color sources has a clear physical basisalthough it cannot be deduced directly from QCD.SISSAoai:inspirehep.net:17698892019 |
spellingShingle | Particle Physics - Experiment Nuclear Physics - Experiment Mishra, Aditya Nath Cuatle, Eleazar Paic, Guy Pajares, Carlos Scharenberg, Rolf Srivastava, Brijesh ALICE data in the framework of the Color String Percolation Model |
title | ALICE data in the framework of the Color String Percolation Model |
title_full | ALICE data in the framework of the Color String Percolation Model |
title_fullStr | ALICE data in the framework of the Color String Percolation Model |
title_full_unstemmed | ALICE data in the framework of the Color String Percolation Model |
title_short | ALICE data in the framework of the Color String Percolation Model |
title_sort | alice data in the framework of the color string percolation model |
topic | Particle Physics - Experiment Nuclear Physics - Experiment |
url | https://dx.doi.org/10.22323/1.350.0004 http://cds.cern.ch/record/2759163 |
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