PaperPanorama

Nuclear Theory·nucl-th

Thursday·October 27, 2016

11 papers6 primary·5 cross-listed

  1. 07

    Consistent Chiral Kinetic Theory in Weyl Materials: Chiral Magnetic Plasmons

    E. V. Gorbar🇺🇦 · V. A. Miransky🇨🇦 · I. A. Shovkovy🇺🇸 · P. O. Sukhachov🇨🇦

    We argue that the correct definition of the electric current in the chiral kinetic theory for Weyl materials should include the Chern-Simons contribution that makes the theory consistent with the local conservation of the electric charge in electromagnetic and strain-induced pseudoelectromagnetic fields. By making use of such a kinetic theory, we study the plasma frequencies of collective modes in Weyl materials in constant magnetic and pseudomagnetic fields, taking into account the effects of dynamical electromagnetism. We show that the collective modes are chiral plasmons. While the plasma frequency of the longitudinal collective mode coincides with the Langmuir one, this mode is unusual because it is characterized not only by oscillations of the electric current density, but also by oscillations of the chiral current density. The latter are triggered by a dynamical version of the chiral electric separation effect. We also find that the plasma frequencies of the transverse modes split up in a magnetic field. This finding suggests an efficient means of extracting the chiral shift parameter from the measurement of the plasma frequencies in Weyl materials.

    cond-mat.str-elhep-thnucl-thPRL(2017)·81 citations
  2. 08

    Atomki anomaly and dark matter in a radiative seesaw model with gauged symmetry

    Osamu Seto🇯🇵 · Takashi Shimomura🇯🇵

    Motivated by recently reported anomalies in a decay of an excited state of beryllium by the Atomki collaboration, we study a radiative seesaw model with gauged symmetry and a parity. Assuming that the anomalies originate from the decay of the gauge boson followed by the nuclear decay, the mass of the lightest right-handed neutrino or the dark matter candidate can be determined below GeV. We show that for this mass range, the model can explain the anomalies in the beryllium decay and the relic dark matter abundance consistent with neutrino masses. We also predict its spin-independent cross section in direct detection experiments for this mass range.

    hep-phhep-exnucl-exnucl-thPRD(2017)·52 citations
  3. 09

    Confinement-Deconfinement transition in Higgs Theory

    Minati Biswal🇮🇳 · Mridupawan Deka🇷🇺 · Sanatan Digal🇮🇳 · P. S. Saumia🇮🇳

    We study the confinement-deconfinement transition in gauge theory in the presence of massless bosons using lattice Monte Carlo simulations. The nature of this transition depends on the temporal extent () of the Euclidean lattice. We find that the transition is a cross-over for and second order with Ising universality class for . Our results show that the second order transition is accompanied by realization of the symmetry.

    hep-lathep-phnucl-thPRD(2017)·7 citations
  4. 10

    Open charm physics with Heavy Ions: theoretical overview

    Andrea Beraudo🇮🇹

    The peculiar role of heavy-flavour observables in relativistic heavy-ion collisions is discussed. Produced in the early stage, and quarks cross the hot medium arising from the collision, interacting strongly with the latter, until they hadronize. Depending on the strength of the interaction heavy quarks may or not approach kinetic equilibrium with the plasma, tending in the first case to follow the collective flow of the expanding fireball. The presence of a hot deconfined medium may also affect heavy-quark hadronization, being possible for them to recombine with the surrounding light thermal partons, so that the final heavy-flavour hadrons inherit part of the flow of the medium. Here we show how it is possible to develop a complete transport setup allowing one to describe heavy-flavour production in high-energy nuclear collisions, displaying some major results one can obtain. Information coming from recent lattice-QCD simulations concerning both the heavy-flavour transport coefficients in the hot QCD plasma and the nature of the charmed degrees around the deconfinement transition is also presented. Finally, the possibility that the formation of a hot deconfined medium even in small systems (high-multiplicity p-Au and d-Au collisions, so far) may affect also heavy-flavour observables is investigated.

    hep-phnucl-thPoS(2016)·1 citation

Affiliations

first authorsco-authorsvia INSPIRE