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GW170817 constraints on the properties of a neutron star in the presence of WIMP dark matter

Abdul Quddus, Grigorios Panotopoulos, Bharat Kumar, Shakeb Ahmad, S K Patra

2020Journal of Physics G Nuclear and Particle Physics46 citationsDOIOpen Access PDF

Abstract

Abstract The properties of a neutron star are studied in the presence of dark matter. We have considered a relatively light weakly interacting massive particle (WIMP) as a dark matter candidate with properties suggested by the results of the DAMA/LIBRA collaboration, realized for instance within the framework of the Next-to-Minimal Supersymmetric Standard Model. The dark matter particle interacts with the baryonic matter of a neutron star through Higgs bosons. The dark matter variables are essentially fixed using the results of the DAMA/LIBRA experiment, which are then used to build the Lagrangian density for the WIMP–nucleon interaction inside a neutron star. We have used the effective field theory motivated relativistic mean field model to study the equations-of-state in the presence of dark matter. The predicted equations-of-state are used in the Tolman–Oppenheimer–Volkoff equations to obtain the mass–radius relations, the moment of inertia, and effects of the tidal field on a neutron star. The calculated properties are compared with the corresponding data of the GW170817 event.

Topics & Concepts

PhysicsDark matterWIMPNeutron starParticle physicsScalar field dark matterWeakly interacting massive particlesEffective field theoryNeutronBaryonMassive particleLight dark matterHot dark matterMixed dark matterStandard Model (mathematical formulation)Nuclear physicsWarm dark matterMinimal Supersymmetric Standard ModelAstrophysicsDark fluidHiggs bosonField (mathematics)CosmologyBaryonic dark matterEquation of stateMoment (physics)Dark energyQuantum electrodynamicsPhysics beyond the Standard ModelParticle (ecology)Anomalous magnetic dipole momentDark Matter and Cosmic PhenomenaPulsars and Gravitational Waves ResearchAtomic and Subatomic Physics Research
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