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Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS

The evolution of strongly interacting matter during the cosmological confinement transition is reviewed. Despite of many proposed relics no specific signal from the rearrangement of quarks and gluons into hadrons has been identified by observations. In contrast to this, several observables in heavy-...

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Detalles Bibliográficos
Autores principales: Kampfer, Burkhard, Gallmeister, K., Pavlenko, O.P.
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1142/9789812810175_0026
http://cds.cern.ch/record/481802
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author Kampfer, Burkhard
Gallmeister, K.
Pavlenko, O.P.
author_facet Kampfer, Burkhard
Gallmeister, K.
Pavlenko, O.P.
author_sort Kampfer, Burkhard
collection CERN
description The evolution of strongly interacting matter during the cosmological confinement transition is reviewed. Despite of many proposed relics no specific signal from the rearrangement of quarks and gluons into hadrons has been identified by observations. In contrast to this, several observables in heavy-ion collisions at CERN-SPS energies point to the creation of a matter state near or slightly above deconfinement. We focus here on the analysis of dileptons and direct photons. Similarities and differences of the Big Bang and the Little Bang confinement dynamics are elaborated.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
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spelling cern-4818022020-03-13T11:21:29Zdoi:10.1142/9789812810175_0026http://cds.cern.ch/record/481802engKampfer, BurkhardGallmeister, K.Pavlenko, O.P.Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPSNuclear Physics - TheoryThe evolution of strongly interacting matter during the cosmological confinement transition is reviewed. Despite of many proposed relics no specific signal from the rearrangement of quarks and gluons into hadrons has been identified by observations. In contrast to this, several observables in heavy-ion collisions at CERN-SPS energies point to the creation of a matter state near or slightly above deconfinement. We focus here on the analysis of dileptons and direct photons. Similarities and differences of the Big Bang and the Little Bang confinement dynamics are elaborated.The evolution of strongly interacting matter during the cosmological confinement transition is reviewed. Despite of many proposed relics no specific signal from the rearrangement of quarks and gluons into hadrons has been identified by observations. In contrast to this, several observables in heavy-ion collisions at CERN-SPS energies point to the creation of a matter state near or slightly above deconfinement. We focus here on the analysis of dileptons and direct photons. Similarities and differences of the Big Bang and the Little Bang confinement dynamics are elaborated.arXiv:nucl-th/0011088oai:cds.cern.ch:4818022000-11-27
spellingShingle Nuclear Physics - Theory
Kampfer, Burkhard
Gallmeister, K.
Pavlenko, O.P.
Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS
title Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS
title_full Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS
title_fullStr Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS
title_full_unstemmed Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS
title_short Confinement in the Big Bang and Deconfinement in the Little Bangs at CERN-SPS
title_sort confinement in the big bang and deconfinement in the little bangs at cern-sps
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1142/9789812810175_0026
http://cds.cern.ch/record/481802
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AT gallmeisterk confinementinthebigbanganddeconfinementinthelittlebangsatcernsps
AT pavlenkoop confinementinthebigbanganddeconfinementinthelittlebangsatcernsps