Strengthening nuclear symmetry energy constraints using multiple resonant shattering flares of neutron stars with realistic mass uncertainties

Author:

Neill Duncan1,Tsang David1,Newton William G2

Affiliation:

1. Department of Physics, University of Bath , Claverton Down, Bath BA1 1AL , UK

2. Department of Physics and Astronomy, Texas A&M University–Commerce , Commerce, TX 75429-3011 , USA

Abstract

ABSTRACT With current and planned gravitational-wave (GW) observing runs, coincident multimessenger timing of resonant shattering flares (RSFs) and GWs may soon allow for neutron star (NS) asteroseismology to be used to constrain the nuclear symmetry energy, an important property of fundamental nuclear physics that influences the composition and equation of state of NSs. In this work, we examine the effects of combining multiple RSF detections on these symmetry energy constraints, and consider how realistic uncertainties in the masses of the progenitor NSs may weaken them. We show that the detection of subsequent multimessenger events has the potential to substantially improve constraints beyond those obtained from the first, and that this improvement is insensitive to the mass of the NSs that produce the RSFs and its uncertainty. This sets these asteroseismic constraints apart from bulk NS properties such as radius, for which the NS mass is highly important, meaning that any multimessenger RSF and GW events can equally improve our knowledge of fundamental physics.

Funder

Engineering and Physical Sciences Research Council

Science and Technology Facilities Council

Royal Society

National Aeronautics and Space Administration

Publisher

Oxford University Press (OUP)

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