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Special Issue in honour of Prof. Yves Brihaye, on the occasion of his 65th birthday. The issue is mainly dedicated to the study of compact objects and solutions to Einstein-Yang-Mills equations and extensions thereof, topics to which Prof. Y. Brihaye contributed very significantly.
Research & information: general --- Physics --- deconfinement --- Matter-gravity coupling --- Yang–Mills theory --- Q-ball --- boson star --- coadjoint orbits --- conformal group --- Poincaré group --- solitons --- boson stars --- Dirac stars --- Spontaneous Symmetry Breaking --- BEH field mass spectrum --- LHC experiments --- black holes --- scalar fields --- Einstein–Maxwell–scalar theory --- gravity models --- Chern–Simons gravity --- exact solutions --- wormholes --- NUT charge --- higher curvature theories
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Special Issue in honour of Prof. Yves Brihaye, on the occasion of his 65th birthday. The issue is mainly dedicated to the study of compact objects and solutions to Einstein-Yang-Mills equations and extensions thereof, topics to which Prof. Y. Brihaye contributed very significantly.
deconfinement --- Matter-gravity coupling --- Yang–Mills theory --- Q-ball --- boson star --- coadjoint orbits --- conformal group --- Poincaré group --- solitons --- boson stars --- Dirac stars --- Spontaneous Symmetry Breaking --- BEH field mass spectrum --- LHC experiments --- black holes --- scalar fields --- Einstein–Maxwell–scalar theory --- gravity models --- Chern–Simons gravity --- exact solutions --- wormholes --- NUT charge --- higher curvature theories
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Special Issue in honour of Prof. Yves Brihaye, on the occasion of his 65th birthday. The issue is mainly dedicated to the study of compact objects and solutions to Einstein-Yang-Mills equations and extensions thereof, topics to which Prof. Y. Brihaye contributed very significantly.
Research & information: general --- Physics --- deconfinement --- Matter-gravity coupling --- Yang–Mills theory --- Q-ball --- boson star --- coadjoint orbits --- conformal group --- Poincaré group --- solitons --- boson stars --- Dirac stars --- Spontaneous Symmetry Breaking --- BEH field mass spectrum --- LHC experiments --- black holes --- scalar fields --- Einstein–Maxwell–scalar theory --- gravity models --- Chern–Simons gravity --- exact solutions --- wormholes --- NUT charge --- higher curvature theories
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Following new developments in the measurement of gravitational waves from neutron–star mergers and the modification or construction of particle colliders to reach larger densities, we are entering a new era, during which we can begin to understand dense and hot matter for the first time. This, together with future supernova explosion data, will provide us with the opportunity to have truly multimessenger data on hot and dense matter, which is, to some extent, similar to the matter present in the core of proto-neutron stars. This Special Issue focuses on the theory necessary to understand present and future data. It includes state-of-the-art theoretical models that describe dense and hot matter and dynamical stellar simulations that make use of them, with the ultimate goal of determining which degrees of freedom are relevant under these conditions and how they affect the matter equation of state and stellar evolution.
Research & information: general --- Physics --- neutron stars --- equations of state --- relativistic models --- gravitational waves --- neutron star --- equation of state --- universal relation --- hybrid star --- color superconductivity --- diquark --- dense matter --- neutrinos --- hyperons --- nuclear matter --- neutron star merger --- beta equilibration --- weak interaction --- n/a --- chiral symmetry --- axion QED --- quark–hole pairing --- cold-dense QCD --- magnetic DCDW --- quark stars --- dark matter --- radial oscillations --- nuclear matter aspects --- quark deconfinement --- quark-gluon plasma production --- phase-transition --- neutron star crust --- meson interactions --- quantum molecular dynamics --- quark-hole pairing
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The book edition of the Universe Special Issue “Compact Stars in the QCD Phase Diagram” is devoted to the overarching aspects shared between heavy-ion collisions and compact star astrophysics in investigating the hadron-to-quark matter phase transition in the equation of state of strongly interacting matter in different regions of the phase diagram of QCD. It comprises 22 review and research articles that, together, will serve as a useful guide in educating both young and senior scientists in this emerging field that represents an intersection of the communities of strongly interacting matter theory, heavy-ion collision physics and compact star astrophysics.
Gamma-ray bursts --- collective flow --- vector interaction --- quarks --- meson production --- ? meson condensation --- neutrino --- magnetic DCDW --- pulsars --- light cluster emission --- monte carlo simulations --- neutron stars --- chiral symmetry --- GW170817 --- stellar structure --- supernova explosions --- maximum mass --- mass-radius relation --- nuclear equation of state --- in-medium effects --- Beth-Uhlenbeck equation of state --- speed of sound --- gravitational waves --- relativistic heavy-ion collisions --- crystalline structure --- neutron star --- finite density --- transport theory --- stellar evolution --- neutron star matter --- hadronic matter --- general relativity --- critical point --- ? resonances --- QCD matter --- modified excluded-volume mechanism --- cold-dense QCD --- quark stars --- quark-hole pairing --- finite size --- mass-twin stars --- pasta phases --- hybrid stars --- cluster virial expansion --- finite temperature --- quark-hadron phase transition --- hadron–quark continuity --- stellar magnetic field --- strangeness --- quark-gluon plasma --- pulsars: PSR J0737 ? 3039A --- pulsars: general --- combustion --- Mott dissociation --- hybrid compact stars --- quark deconfinement --- quark matter --- Gravitational waves --- pulsars: PSR J1757 ? 1854 --- neutrino emissivities --- directed flow --- star oscillations --- quark-hadron matter --- QCD phase diagram --- phase transition --- equation of state --- nuclear matter --- nuclear symmetry energy --- hydrodynamics --- deconfinement --- stars: neutron --- axion QED --- Quantum Chromodynamics --- dense matter --- heavy-ion collisions
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