Accretion of Dark Matter by Stars

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Searches for dark matter imprints are one of the most active areas of current research. We focus here on light fields with mass m(B), such as axions and axionlike candidates. Using perturbative techniques and full-blown nonlinear numerical relativity methods, we show the following. (i) Dark matter can pile up in the center of stars, leading to configurations and geometries oscillating with a frequency that is a multiple of f = 2.5 x 10(14) (m(B)c(2)/eV) Hz. These configurations are stable throughout most of the parameter space, and arise out of credible mechanisms for dark-matter capture. Stars with bosonic cores may also develop in other theories with effective mass couplings, such as (massless) scalar-tensor theories. We also show that (ii) collapse of the host star to a black hole is avoided by efficient gravitational cooling mechanisms.

Original languageEnglish
Article number111301
JournalPhysical Review Letters
Volume115
Issue number11
Number of pages5
ISSN0031-9007
DOIs
Publication statusPublished - 9 Sep 2015
Externally publishedYes

    Research areas

  • BOSON-FERMION STARS, STABILITY, CONFIGURATIONS, PARTICLES

ID: 300070471