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Titre : Hadrons and Quark–Gluon Plasma Type de document : document électronique Auteurs : Jean Letessier, Auteur ; Johann Rafelski, Auteur Editeur : Cambridge [United Kingdom] : Cambridge University Press Année de publication : 2022 Importance : 416 p. Présentation : ill. ISBN/ISSN/EAN : 978-1-00-929075-3 Langues : Anglais (eng) Catégories : Open Access Publications Tags : Quark-gluon plasma Hadronization Deconfinement Quantum chromodynamics Heavy-ion collisions Quarks and gluons Strong interaction Relativistic Heavy Ion Collider Color confinement Index. décimale : 539.7 Physique atomique et nucléaire Résumé : Before matter as we know it emerged, the universe was filled with the primordial state of hadronic matter called quark–gluon plasma. This hot soup of quarks and gluons is effectively an inescapable consequence of our current knowledge about the fundamental hadronic interactions: quantum chromodynamics. This book covers the ongoing search to verify the prediction experimentally and discusses the physical properties of this novel form of matter. It begins with an overview of the subject, followed by a discussion of experimental methods and results. The second half of the book covers hadronic matter in confined and deconfined form, and strangeness as a signature of the quark-gluon phase. It is ideal as an introduction for graduate students, as well as providing a valuable reference for researchers already working in this and related fields. En ligne : https://doi.org/10.1017/9781009290753 Hadrons and Quark–Gluon Plasma [document électronique] / Jean Letessier, Auteur ; Johann Rafelski, Auteur . - Cambridge (United Kingdom) : Cambridge University Press, 2022 . - 416 p. : ill.
ISBN : 978-1-00-929075-3
Langues : Anglais (eng)
Catégories : Open Access Publications Tags : Quark-gluon plasma Hadronization Deconfinement Quantum chromodynamics Heavy-ion collisions Quarks and gluons Strong interaction Relativistic Heavy Ion Collider Color confinement Index. décimale : 539.7 Physique atomique et nucléaire Résumé : Before matter as we know it emerged, the universe was filled with the primordial state of hadronic matter called quark–gluon plasma. This hot soup of quarks and gluons is effectively an inescapable consequence of our current knowledge about the fundamental hadronic interactions: quantum chromodynamics. This book covers the ongoing search to verify the prediction experimentally and discusses the physical properties of this novel form of matter. It begins with an overview of the subject, followed by a discussion of experimental methods and results. The second half of the book covers hadronic matter in confined and deconfined form, and strangeness as a signature of the quark-gluon phase. It is ideal as an introduction for graduate students, as well as providing a valuable reference for researchers already working in this and related fields. En ligne : https://doi.org/10.1017/9781009290753 Réservation
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