Radial oscillations of strange quark stars admixed with condensed dark matter

G. Panotopoulos and Ilídio Lopes
Phys. Rev. D 96, 083013 – Published 18 October 2017

Abstract

We compute the 20 lowest frequency radial oscillation modes of strange stars admixed with condensed dark matter. We assume a self-interacting bosonic dark matter, and we model dark matter inside the star as a Bose-Einstein condensate. In this case the equation of state is a polytropic one with index 1+1/n=2 and a constant K that is computed in terms of the mass of the dark matter particle and the scattering length. Assuming a mass and a scattering length compatible with current observational bounds for self-interacting dark matter, we have integrated numerically first the Tolman-Oppenheimer-Volkoff equations for the hydrostatic equilibrium, and then the equations for the perturbations ξ=Δr/r and η=ΔP/P. For a compact object with certain mass and radius we have considered here three cases, namely no dark matter at all and two different dark matter scenarios. Our results show that (i) the separation between consecutive modes increases with the amount of dark matter, and (ii) the effect is more pronounced for higher order modes. These effects are relevant even for a strange star made of 5% dark matter.

  • Figure
  • Figure
  • Received 3 August 2017

DOI:https://doi.org/10.1103/PhysRevD.96.083013

© 2017 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

G. Panotopoulos* and Ilídio Lopes

  • Centro Multidisciplinar de Astrofísica, Instituto Superior Técnico, Universidade de Lisboa, Avenida Rovisco Pais, 1049-001 Lisboa, Portugal

  • *grigorios.panotopoulos@tecnico.ulisboa.pt
  • ilidio.lopes@tecnico.ulisboa.pt

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Issue

Vol. 96, Iss. 8 — 15 October 2017

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