PaperPanorama

Nuclear Theory·nucl-th

Tuesday·January 19, 2016

14 papers10 primary·4 cross-listed

  1. 11

    Analytic approaches to relativistic hydrodynamics

    Yoshitaka Hatta🇯🇵

    I summarize our recent work towards finding and utilizing analytic solutions of relativistic hydrodynamic. In the first part I discuss various exact solutions of the second-order conformal hydrodynamics. In the second part I compute flow harmonics analytically using the anisotropically deformed Gubser flow and discuss its dependence on , , viscosity, the chemical potential and the charge.

    hep-phnucl-exnucl-thNPA(2016)·4 citations
  2. 12

    Towards a microscopic understanding of nucleon polarizabilities

    Gernot Eichmann🇩🇪

    We outline a microscopic framework to calculate nucleon Compton scattering from the level of quarks and gluons within the covariant Faddeev approach. We explain the connection with hadronic expansions of the Compton scattering amplitude and discuss the obstacles in maintaining electromagnetic gauge invariance. Finally we give preliminary results for the nucleon polarizabilities.

    hep-phnucl-thFew Body Syst.(2016)·4 citations
  3. 13

    Quark matter nucleation in neutron stars and astrophysical implications

    Ignazio Bombaci🇮🇹 · Domenico Logoteta🇮🇹 · Isaac Vidana🇵🇹 · Constanca Providencia🇵🇹

    A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutron stars. We investigate the quark deconfinement phase transition in cold (T = 0) and hot beta-stable hadronic matter. Assuming a first order phase transition, we calculate and compare the nucleation rate and the nucleation time due to quantum and thermal nucleation mechanisms. We show that above a threshold value of the central pressure a pure hadronic star (HS) (i.e. a compact star with no fraction of deconfined quark matter) is metastable to the conversion to a quark star (QS) (i.e. a hybrid star or a strange star). This process liberates an enormous amount of energy, of the order of 10^{53}~erg, which causes a powerful neutrino burst, likely accompanied by intense gravitational waves emission, and possibly by a second delayed (with respect to the supernova explosion forming the HS) explosion which could be the energy source of a powerful gamma-ray burst (GRB). This stellar conversion process populates the QS branch of compact stars, thus one has in the Universe two coexisting families of compact stars: pure hadronic stars and quark stars. We introduce the concept of critical mass M_{cr} for cold HSs and proto-hadronic stars (PHSs), and the concept of limiting conversion temperature for PHSs. We show that PHSs with a mass M < M_{cr} could survive the early stages of their evolution without decaying to QSs. Finally, we discuss the possible evolutionary paths of proto-hadronic stars.

    astro-ph.HEastro-ph.SRhep-phnucl-thEPJA(2016)·83 citations
  4. 14

    Bubble dynamics and the quark-hadron phase transition in nuclear collisions

    D. A. Fogaça🇧🇷 · S. M. Sanches Jr.🇧🇷 · R. Fariello🇧🇷 · F. S. Navarra🇧🇷

    We study the nucleation of a quark gluon plasma (QGP) phase in a hadron gas at low temperatures and high baryon densities. This kind of process will presumably happen very often in nuclear collisions at FAIR and NICA. When the appropriate energy densities (or baryon densities) and temperatures are reached the conversion of one phase into another is not instantaneous. It is a complex process, which involves the nucleation of bubbles of the new phase. One important element of this transition process is the rate of growth of a QGP bubble. In order to estimate it we solve the Relativistic RayleighPlesset equation which governs the dynamics of a relativistic spherical bubble in a strongly interacting medium. The baryon rich hadron gas is represented by the nonlinear Walecka model and the QGP is described by the MIT bag model and also by a mean field model of QCD.

    hep-phnucl-thPRC(2016)·7 citations

Affiliations

first authorsco-authorsvia INSPIRE