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Constraining Nuclear Symmetry Energy with Multi-messenger Resonant Shattering Flares

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arxiv 2208.00994 v1 pith:ANCXXQ3R submitted 2022-08-01 astro-ph.HE nucl-th

Constraining Nuclear Symmetry Energy with Multi-messenger Resonant Shattering Flares

classification astro-ph.HE nucl-th
keywords nuclearenergysymmetryconstraintsmatterobservablesprobesradii
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Much effort is devoted to measuring the nuclear symmetry energy through neutron star (NS) and nuclear observables. Since matter in the NS core may be non-hadronic, observables like radii and tidal deformability may not provide reliable constraints on properties of nucleonic matter. We demonstrate that coincident timing of a resonant shattering flare (RSF) and gravitational wave signal during binary NS inspiral probes the crust-core transition region and provides constraints on the symmetry energy comparable to terrestrial nuclear experiments. We show that nuclear masses, RSFs and measurements of NS radii and tidal deformabilities constrain different density ranges of the EOS, providing complementary probes.

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