PaperPanorama

Nuclear Theory·nucl-th

Thursday·November 17, 2016

10 papers5 primary·5 cross-listed

  1. 01

    Recent progress in anisotropic hydrodynamics

    Michael Strickland🇺🇸

    The quark-gluon plasma created in a relativistic heavy-ion collisions possesses a sizable pressure anisotropy in the local rest frame at very early times after the initial nuclear impact and this anisotropy only slowly relaxes as the system evolves. In a kinetic theory picture, this translates into the existence of sizable momentum-space anisotropies in the underlying partonic distribution functions, <p_L^2> << <p_T^2>. In such cases, it is better to reorganize the hydrodynamical expansion by taking into account momentum-space anisotropies at leading-order in the expansion instead of as a perturbative correction to an isotropic distribution. The resulting anisotropic hydrodynamics framework has been shown to more accurately describe the dynamics of rapidly expanding systems such as the quark-gluon plasma. In this proceedings contribution, I review the basic ideas of anisotropic hydrodynamics, recent progress, and present a few preliminary phenomenological predictions for identified particle spectra and elliptic flow.

    nucl-thhep-phEPJ Web Conf.(2017)·9 citations
  2. 02

    Dynamics of semi-superfluid fluxtubes in color-flavor locked quark matter

    Mark G. Alford🇺🇸 · Andreas Windisch🇺🇸

    At very high densities, as for example in the core of a neutron star, matter may appear in the color-flavor locked (CFL) phase, which is a superfluid. This phase features topologically stable vortex solutions, which arise in a spinning superfluid as localized configurations carrying quanta of angular momentum. Despite the topological stability of these vortices they are not the lowest energy state of the system at neutron star densities and decay into triplets of semi-superfluid fluxtubes. In these proceedings we report on the progress of our numerical study in the Ginzburg-Landau approach, where we investigate lattices of semi-superfluid fluxtubes. The fluxtubes are obtained through controlled decay of global vortex configurations in the presence of a gauge field. Understanding the dynamics of semi-superfluid string configurations is important in the context of angular momentum transfer from a quark matter core of a neutron star beyond the core boundary, since not vortex-, but fluxtube pinning seems to be the relevant mechanism in this scenario.

    nucl-thastro-ph.HEhep-phEPJ Web Conf.(2017)·0 citations
  3. 03

    Neutrino-nucleon scattering in supernova matter from the virial expansion

    C.J. Horowitz🇺🇸 · O. L. Caballero🇨🇦 · Zidu Lin🇺🇸 · Evan O'Connor🇺🇸 · A. Schwenk🇩🇪

    We generalize our virial approach to study the neutral current neutrino response of nuclear matter at low densities. In the long-wavelength limit, the virial expansion makes model-independent predictions for neutrino-nucleon scattering rates and the density S_V and spin S_A responses. We find S_A is significantly reduced from one even at low densities. We provide a simple fit S_A^f(n,T,Y_p) of the axial response as a function of density n, temperature T and proton fraction Y_p. This fit reproduces our model independent virial results at low densities and reproduces the Burrows and Sawyer random phase approximation (RPA) results at high densities. Our fit can be incorporated into supernova simulations in a straight forward manner. Preliminary one dimensional supernova simulations suggest that the reduction in the axial response may enhance neutrino heating rates in the gain region during the accretion phase of a core-collapse supernovae.

    nucl-thastro-ph.HEPRC(2017)·99 citations
  4. 04

    Investigating the NCQ scaling of elliptic flow at LHC with a multiphase transport model

    Liang Zheng🇨🇳 · Hui Li🇨🇳 · Hong Qin🇨🇳 · Qi-Ye Shou🇨🇳 · Zhong-Bao Yin🇨🇳

    The number of constituent quark (NCQ) scaling behavior of elliptic flow has been systematically studied at the LHC energy within the framework of a multiphase transport model (AMPT) in this work. We find that the parameters used to generate the initial states and the collision centrality are important for the existence of NCQ scaling even when hadronic rescattering contribution is off in Pb-Pb collisions of TeV. By turning on the hadron rescattering process, the hadronic evolution impacts are also found to be significant. Extending the analysis to Pb-Pb collsions of TeV, one would observe similar qualitative features.

    nucl-thnucl-exEPJA(2017)·13 citations
  5. 05

    From gluon topology to chiral anomaly: Emergent phenomena in quark-gluon plasma

    Jinfeng Liao🇺🇸

    Heavy-ion collision experiments at RHIC and the LHC have found a new emergent phase of QCD, a strongly coupled quark-gluon plasma (sQGP) that is distinctively different from either the low temperature hadron phase or the very high temperature weakly coupled plasma phase. Highly nontrivial emergent phenomena occur in such sQGP and two examples will be discussed in this contribution: the magnetic component of sQGP that stems from topologically nontrivial configurations in the gluon sector; and the anomalous chiral transport that arises as macroscopic manifestation of microscopic chiral anomaly in the quark sector. For both examples, their important roles in explaining pertinent heavy-ion data will be emphasized.

    nucl-thhep-phhep-thnucl-exJ.Phys.Conf.Ser.(2017)·1 citation

Affiliations

first authorsco-authorsvia INSPIRE