PaperPanorama

Nuclear Theory·nucl-th

Monday·July 11, 2016

7 papers2 primary·5 cross-listed

  1. 03

    Nonthermal Fixed Points in Quantum Field Theory Beyond the Weak-Coupling Limit

    Jürgen Berges🇩🇪 · Benjamin Wallisch🇬🇧

    Quantum systems in extreme conditions can exhibit universal behavior far from equilibrium associated to nonthermal fixed points with a wide range of topical applications from early-universe inflaton dynamics and heavy-ion collisions to strong quenches in ultracold quantum gases. So far, most studies have relied on a mapping of the quantum dynamics onto a classical-statistical theory that can be simulated on a computer. However, the mapping is based on a weak-coupling limit, while phenomenological applications often require moderate interaction strengths. We report on the observation of nonthermal fixed points directly in quantum field theory beyond the weak-coupling limit. For the example of a relativistic scalar O(N)-symmetric quantum field theory, we numerically solve the nonequilibrium dynamics employing a 1/N expansion to next-to-leading order, which does not rely on a small coupling parameter. Starting from two different sets of overoccupied and of strong-field initial conditions, we find that nonthermal fixed points are not restricted to parameter ranges suitable for classical-statistical simulations, but extend also to couplings of order one. While the infrared behavior is found to be insensitive to the differences in the initial conditions, we demonstrate that transport phenomena to higher momenta depend on the presence or absence of a symmetry-breaking field expectation value.

    hep-phhep-thnucl-thPRD(2017)·42 citations
  2. 06

    The QCD equation of state at finite density from analytical continuation

    J. Gunther · R. Bellwied · S. Borsanyi · Z. Fodor · S. D. Katz · A. Pasztor · C. Ratti

    We determine the equation of state of QCD at finite chemical potential, to order , for a system of 2+1 quark flavors. The simulations are performed at the physical mass for the light and strange quarks on several lattice spacings; the results are continuum extrapolated using lattices of up to temporal resolution. The QCD pressure and interaction measure are calculated along the isentropic trajectories in the plane corresponding to the RHIC Beam Energy Scan collision energies. Their behavior is determined through analytic continuation from imaginary chemical potentials of the baryonic density. We also determine the Taylor expansion coefficients around from the simulations at imaginary chemical potentials. Strangeness neutrality and charge conservation are imposed, to match the experimental conditions.

    hep-lathep-phnucl-thNPA(2017)·148 citations
  3. 07

    Mass ordering of spectra from fragmentation of saturated gluon states in high multiplicity proton-proton collisions

    Bjoern Schenke🇺🇸 · Soeren Schlichting🇺🇸 · Prithwish Tribedy🇺🇸 · Raju Venugopalan🇺🇸

    The mass ordering of mean transverse momentum and of the Fourier harmonic coefficient of azimuthally anisotropic particle distributions in high energy hadron collisions is often interpreted as evidence for the hydrodynamic flow of the matter produced. We investigate an alternative initial state interpretation of this pattern in high multiplicity proton-proton collisions at the LHC. The QCD Yang-Mills equations describing the dynamics of saturated gluons are solved numerically with initial conditions obtained from the Color Glass Condensate based IP-Glasma model. The gluons are subsequently fragmented into various hadron species employing the well established Lund string fragmentation algorithm of the PYTHIA event generator. We find that this ab initio initial state approach reproduces characteristic features of bulk spectra, in particular the particle mass dependence of and .

    hep-phnucl-exnucl-thPRL(2016)·114 citations

Affiliations

first authorsco-authorsvia INSPIRE