Results 181 to 190 of about 1,448,470 (215)
Hadron-ion collisions in Pythia and the vector-meson dominance model for photoproduction. [PDF]
Helenius I, Utheim M.
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A universal framework for the quantum simulation of Yang-Mills theory. [PDF]
Halimeh JC +5 more
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The waning of the WIMP: endgame? [PDF]
Arcadi G +9 more
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Variable rate neural compression for sparse detector data. [PDF]
Huang Y +11 more
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The quest for the quark–gluon plasma
Nature, 2007High-energy collisions between heavy nuclei have in the past 20 years provided multiple indications of a deconfined phase of matter that exists at phenomenally high temperatures and pressures. This 'quark-gluon plasma' is thought to have permeated the first microseconds of the Universe.
Peter, Braun-Munzinger, Johanna, Stachel
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Pramana, 2000
Recent trends in the research of quark gluon plasma (QGP) are surveyed and the current experimental and theoretical status regarding the properties and signals of QGP is reported. We hope that the experiments commencing at relativistic heavy-ion collider (RHIC) in 2000 will provide a glimpse of the QGP formation.
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Recent trends in the research of quark gluon plasma (QGP) are surveyed and the current experimental and theoretical status regarding the properties and signals of QGP is reported. We hope that the experiments commencing at relativistic heavy-ion collider (RHIC) in 2000 will provide a glimpse of the QGP formation.
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2008
These lectures present features of high temperature and baryon number density hadronic matter as it might be described by QCD, and describe the possible formation of such matter in ultra-relativistic nucleus-nucleus collisions. The confinement-deconfinement transition, and the chiral symmetry breaking transition are discussed using order parameters ...
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These lectures present features of high temperature and baryon number density hadronic matter as it might be described by QCD, and describe the possible formation of such matter in ultra-relativistic nucleus-nucleus collisions. The confinement-deconfinement transition, and the chiral symmetry breaking transition are discussed using order parameters ...
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2005
Lattice QCD predicts a phase transition to a hitherto unseen state of matter called quark-gluon plasma (QGP). A few microseconds after the big bang, our universe was most likely filled with QGP. Amazingly, attempts to produce QGP in the laboratory are currently going on in the relativistic heavy ion collider (RHIC) in the USA.
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Lattice QCD predicts a phase transition to a hitherto unseen state of matter called quark-gluon plasma (QGP). A few microseconds after the big bang, our universe was most likely filled with QGP. Amazingly, attempts to produce QGP in the laboratory are currently going on in the relativistic heavy ion collider (RHIC) in the USA.
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Nuclear Physics A, 1993
Abstract I present various aspects of the physics of the quark-gluon plasma. Known properties of the transition from hadronic matter to the quark-gluon plasma are recalled. Progress in the phenomenology of ultra-relativistic heavy ion collisions is discussed on two examples. Some recent theoretical developments are mentioned.
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Abstract I present various aspects of the physics of the quark-gluon plasma. Known properties of the transition from hadronic matter to the quark-gluon plasma are recalled. Progress in the phenomenology of ultra-relativistic heavy ion collisions is discussed on two examples. Some recent theoretical developments are mentioned.
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Confinement-deconfinement temperature for a rotating quark-gluon plasma
Physical Review D, 2022Octavio Junqueira, N R F Braga
exaly

