PaperPanorama

Nuclear Theory·nucl-th

Thursday·March 2, 2017

5 papers2 primary·3 cross-listed

  1. 01

    Photons from the Early Stages of Relativistic Heavy Ion Collisions

    L. Oliva🇮🇹 · M. Ruggieri🇨🇳 · S. Plumari🇮🇹 · F. Scardina🇮🇹 · G. X. Peng🇨🇳 · V. Greco🇮🇹

    We present results about photons production in relativistic heavy ion collisions. The main novelty of our study is the calculation of the contribution of the early stage photons to the photon spectrum. The initial stage is modeled by an ensemble of classical gluon fields which decay to a quark-gluon plasma via the Schwinger mechanism, and the evolution of the system is studied by coupling classical field equations to relativistic kinetic theory; photons production is then computed by including the pertinent collision processes into the collision integral. We find that the contribution of the early stage photons to the direct photon spectrum is substantial for GeV and higher, the exact value depending on the collision energy; therefore we identify this part of the photon spectrum as the sign of the early stage. Moreover, the amount of photons produced during the early stage is not negligible with respect to those produced by a thermalized quark-gluon plasma: we support the idea that there is no dark age in relativistic heavy ion collisions.

    nucl-thhep-exhep-phnucl-exPRC(2017)·27 citations
  2. 02

    Repulsive interactions and their effects on the thermodynamics of hadron gas

    Pok Man Lo🇵🇱 · Bengt Friman🇩🇪 · Michal Marczenko🇵🇱 · Krzysztof Redlich🇵🇱 · Chihiro Sasaki🇵🇱

    We compare two approaches in modeling repulsive interactions among hadrons: the excluded volume approximation and the S-matrix formalism. These are applied to study the thermodynamics of the system. It is shown that the introduction of an extraneous repulsion between pions and nucleons via the excluded volume approach, in addition to the interaction that generates the -resonance, is incompatible with the analysis based on the physical phase shift of pion-nucleon scattering in the channel. This finding suggests that the repulsive force between hadrons is interaction-channel dependent and is hence unlikely to be captured by a single phenomenological parameter. The S-matrix approach employed here can be used, however, to provide useful estimates of the magnitude of the effective eigenvolume.

    nucl-thhep-phPRC(2017)·39 citations
  3. 03

    Cooling of neutron stars in soft X-ray transients

    Sophia Han · Andrew W. Steiner

    Thermal states of neutron stars in soft X-ray transients (SXRTs) are thought to be determined by "deep crustal heating" in the accreted matter that drives the quiescent luminosity and cooling via emission of photons and neutrinos from the interior. In this study, we assume a global thermal steady-state of the transient system and calculate the heating curves (quiescent surface luminosity as a function of mean accretion rate) predicted from theoretical models, taking into account variations in the equations of state, superfluidity gaps, thickness of the light element layer and a phenomenological description of the direct Urca threshold. We further provide a statistical analysis on the uncertainties in these parameters, and compare the overall results with observations of several SXRTs, in particular the two sources containing the coldest (SAX J1808.4-3658) and the hottest (Aql X-1) neutron stars. Interpretation of the observational data indicates that the direct Urca process is required for the most massive stars and also suggests small superfluid gaps.

    astro-ph.HEastro-ph.SRnucl-thPRC(2017)·24 citations
  4. 04

    Broken boost invariance in the Glasma via finite nuclei thickness

    Andreas Ipp🇦🇹 · David Müller🇦🇹

    We simulate the creation and evolution of non-boost-invariant Glasma in the early stages of heavy ion collisions within the color glass condensate framework. This is accomplished by extending the McLerran-Venugopalan model to include a parameter for the Lorentz-contracted but finite width of the nucleus in the beam direction. We determine the rapidity profile of the Glasma energy density, which shows deviations from the boost-invariant result. Varying the parameters both broad and narrow profiles can be produced. We compare our results to experimental data from RHIC and find surprising agreement.

    hep-phnucl-thPLB(2017)·40 citations
  5. 05

    GPDs at non-zero skewness in ADS/QCD model

    Matteo Rinaldi🇪🇸

    We study Generalized Parton Distribution functions (GPDs) usually measured in hard exclusive processes and encoding information on the three dimensional partonic structure of hadrons and their spin decomposition, for non zero skewness within the AdS/QCD formalism. To this aim the canonical scheme to calculate GPDs at zero skewness has been properly generalized. Furthermore, we show that the latter quantities, in this non forward regime, are sensitive to non trivial details of the hadronic light front wave function, such as a kind of parton correlations usually not accessible in studies of form factors and GPDs at zero skewness.

    hep-phnucl-thPLB(2017)·25 citations

Affiliations

first authorsco-authorsvia INSPIRE