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Dark Matter Effects on the Compact Star Properties

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arxiv 2112.14198 v2 pith:Y4NWJ2HY submitted 2021-12-28 astro-ph.HE gr-qcnucl-th

classification astro-ph.HEgr-qcnucl-th
keywords starneutronpropertieslovematternumberspercentagetidal
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abstract

The neutron star properties are generally determined by the equation of state of $\beta$-equilibrated dense matter. In this work, we consider the interaction of fermionic dark matter (DM) particles with the nucleons via Higgs exchange and investigate its effect on the neutron star properties with the relativistic mean-field model equation of state coupled with DM. We deduce that DM significantly affects the neutron star properties, such as considerably reduce the maximum mass of the star, which depends on the percentage of the DM considered inside the neutron star. The tidal Love numbers both for electric and magnetic cases and surficial Love numbers are also studied for DM admixed NS. It is observed that the magnitude of tidal and surficial Love numbers increase with more DM percentage. Further, we point out that post-Newtonian tidal corrections to gravitational waves decreased by increasing DM percentage. Also, the DM effect on the GW signal is significant during the late inspiral and merger stages of binary evolution for GW frequencies >500 Hz.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. XTE J1814-338 as a dark matter admixed neutron star

    astro-ph.HE 2024-11 conditional novelty 5.0 of 10

    The ultracompact pulsar XTE J1814-338 is reproduced as a neutron star containing 200 GeV fermionic dark matter with a Fermi momentum of 0.08 GeV.

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