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Strong Interactions, (De)coherence and Quarkonia

Quarkonia are the central objects to explore the non-perturbative nature of non-abelian gauge theories. We describe the confinement-deconfinement phases for heavy quarkonia in a hot QCD medium and thereby the statistical nature of the inter-quark forces. In the sense of one-loop quantum effects, we...

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Autores principales: Bellucci, Stefano, Chandra, Vinod, Tiwari, Bhupendra Nath
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1324645
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author Bellucci, Stefano
Chandra, Vinod
Tiwari, Bhupendra Nath
author_facet Bellucci, Stefano
Chandra, Vinod
Tiwari, Bhupendra Nath
author_sort Bellucci, Stefano
collection CERN
description Quarkonia are the central objects to explore the non-perturbative nature of non-abelian gauge theories. We describe the confinement-deconfinement phases for heavy quarkonia in a hot QCD medium and thereby the statistical nature of the inter-quark forces. In the sense of one-loop quantum effects, we propose that the "quantum" nature of quark matters follows directly from the thermodynamic consideration of Richardson potential. Thereby we gain an understanding of the formation of hot and dense states of quark gluon plasma matter in heavy ion collisions and the early universe. In the case of the non-abelian theory, the consideration of the Sudhakov form factor turns out to be an efficient tool for soft gluons. In the limit of the Block-Nordsieck resummation, the strong coupling obtained from the Sudhakov form factor yields the statistical nature of hadronic bound states, e.g. kaons and Ds particles.
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spelling cern-13246452019-09-30T06:29:59Z http://cds.cern.ch/record/1324645 eng Bellucci, Stefano Chandra, Vinod Tiwari, Bhupendra Nath Strong Interactions, (De)coherence and Quarkonia Particle Physics - Theory Quarkonia are the central objects to explore the non-perturbative nature of non-abelian gauge theories. We describe the confinement-deconfinement phases for heavy quarkonia in a hot QCD medium and thereby the statistical nature of the inter-quark forces. In the sense of one-loop quantum effects, we propose that the "quantum" nature of quark matters follows directly from the thermodynamic consideration of Richardson potential. Thereby we gain an understanding of the formation of hot and dense states of quark gluon plasma matter in heavy ion collisions and the early universe. In the case of the non-abelian theory, the consideration of the Sudhakov form factor turns out to be an efficient tool for soft gluons. In the limit of the Block-Nordsieck resummation, the strong coupling obtained from the Sudhakov form factor yields the statistical nature of hadronic bound states, e.g. kaons and Ds particles. info:eu-repo/grantAgreement/EC/FP7/226455 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1324645 2011-01-26
spellingShingle Particle Physics - Theory
Bellucci, Stefano
Chandra, Vinod
Tiwari, Bhupendra Nath
Strong Interactions, (De)coherence and Quarkonia
title Strong Interactions, (De)coherence and Quarkonia
title_full Strong Interactions, (De)coherence and Quarkonia
title_fullStr Strong Interactions, (De)coherence and Quarkonia
title_full_unstemmed Strong Interactions, (De)coherence and Quarkonia
title_short Strong Interactions, (De)coherence and Quarkonia
title_sort strong interactions, (de)coherence and quarkonia
topic Particle Physics - Theory
url http://cds.cern.ch/record/1324645
http://cds.cern.ch/record/1324645
work_keys_str_mv AT belluccistefano stronginteractionsdecoherenceandquarkonia
AT chandravinod stronginteractionsdecoherenceandquarkonia
AT tiwaribhupendranath stronginteractionsdecoherenceandquarkonia