Effects of light-mass fermionic dark matter on the equilibrium and stability of white dwarfs
arXiv:2508.10002 · doi:10.1103/msby-sfdb
Abstract
White dwarfs (WDs) can be used as laboratories to test strong gravity and high-density regimes, once their equation of state is not so uncertain as the one of neutron stars. This makes them also a useful tool to constrain dark-matter models. In this work, we study dark matter white dwarfs (DMWD) composed of white dwarf matter admixed with fermionic dark matter in a two-fluid general relativistic framework. Dark matter particles are considered to have masses between GeV. The equilibrium configurations and stability are derived, showing that the DMWD can be more compact, with masses around 1.3 and radii around 500 km. The increasing compactness leads to changes in the fundamental modes of radial oscillations ( for 0.1 GeV DM), which produce detectable shifts in GW frequencies. The interplay between dark matter and normal matter thus provides a compelling avenue for interpreting deviations in observed WD properties and for placing constraints on DM characteristics through astrophysical observations.
References in corpus (17)
- First results from DAMA/LIBRA and the combined results with DAMA/NaI
- New results from DAMA/LIBRA
- Results from a Search for Light-Mass Dark Matter with a P-type Point Contact Germanium Detector
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Results from a Low-Energy Analysis of the CDMS II Germanium Data
- First Dark Matter Results from the XENON100 Experiment
- Compact Stars as Dark Matter Probes
- Compact stars made of fermionic dark matter
- Dark compact objects: an extensive overview
- Tidal Deformability of Dark Matter Admixed Neutron Stars
- Dark matter effects on tidal deformabilities and moment of inertia in a hadronic model with short-range correlations
- Dark matter component in hadronic models with short-range correlations
- Constraints on light dark matter particles using white dwarf stars
- Structure and evolution of ultra-massive white dwarfs in general relativity
- On the optical transients from double white-dwarf mergers
- Astrometric and photometric verification of faint blue white dwarfs in the Gaia catalogue of nearby stars
- Exploring Temperature Influences on Gravitational Wave Production in Binary White Dwarfs