PaperPanorama

Nuclear Theory·nucl-th

Friday·March 2, 2018

6 papers4 primary·2 cross-listed

  1. 05

    [Submitted on 24 Jan 2018] (cross-list from hep-th)

    Dynamics of vortices in chiral media: the chiral propulsion effect

    Yuji Hirono🇺🇸 · Dmitri E. Kharzeev🇺🇸 · Andrey V. Sadofyev🇺🇸

    We study the motion of vortex filaments in chiral media, and find a semi-classical analog of the anomaly-induced chiral magnetic effect. The helical solitonic excitations on vortices in a parity-breaking medium are found to carry an additional energy flow along the vortex in the direction dictated by the sign of chirality imbalance; we call this new transport phenomenon the Chiral Propulsion Effect (CPE). The dynamics of the filament is described by a modified version of the localized induction equation in the parity-breaking background. We analyze the linear stability of simple vortex configurations, and study the effects of chiral media on the excitation spectrum and the growth rate of the unstable modes. It is also shown that, if the equation of motion of the filament is symmetric under the simultaneous reversal of parity and time, the resulting planar solution cannot transport energy.

    Comments:
    8 pages, 1 figure
    Subjects:
    High Energy Physics — Theory (hep-th); Strongly Correlated Electrons (cond-mat.str-el); High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    1803.00381 [pdf]
    PRL(2018)·4 citations
  2. 06

    [Submitted on 1 Mar 2018] (cross-list from gr-qc)

    New constraints on radii and tidal deformabilities of neutron stars from GW170817

    Elias R. Most🇩🇪 · Lukas R. Weih🇩🇪 · Luciano Rezzolla🇩🇪 · Jürgen Schaffner-Bielich🇩🇪

    We explore in a parameterized manner a very large range of physically plausible equations of state (EOSs) for compact stars for matter that is either purely hadronic or that exhibits a phase transition. In particular, we produce two classes of EOSs with and without phase transitions, each containing one million EOSs. We then impose constraints on the maximum mass, (), and on the dimensionless tidal deformability () deduced from GW170817, together with recent suggestions of lower limits on . Exploiting more than equilibrium models for each class of EOSs, we produce distribution functions of all the stellar properties and determine, among other quantities, the radius that is statistically most probable for any value of the stellar mass. In this way, we deduce that the radius of a purely hadronic neutron star with a representative mass of is constrained to be at a - confidence level, with a most likely value of ; similarly, the smallest dimensionless tidal deformability is , again at a - level. On the other hand, because EOSs with a phase transition allow for very compact stars on the so-called `twin-star' branch, small radii are possible with such EOSs although not probable, i.e. and at a - level, with at a - level. Finally, since these EOSs exhibit upper limits on , the detection of a binary with total mass of and can rule out twin-star solutions.

    Comments:
    Added discussion on EOSs with phase transitions; no changes for purely hadronic EOSs; matches version accepted by PRL
    Subjects:
    General Relativity and Quantum Cosmology (gr-qc); High Energy Astrophysical Phenomena (astro-ph.HE); Nuclear Theory (nucl-th)
    arXiv:
    1803.00549 [pdf]
    PRL(2018)·710 citations

Affiliations

first authorsco-authorsvia INSPIRE