White dwarfs (WDs) are the most promising captors of dark matter (DM) particles in the crests that are expected to build up in the cores of dense stellar clusters. The DM particles could reach sufficient densities in WD cores to liberate energy through self-annihilation. The extinction associated with our Galactic Centre, the most promising region where to look for such effects, makes it impossible to detect the potential associated luminosity of the DM-burning WDs. However, in smaller stellar systems which are close enough to us and not heavily extincted, such as $\omega-$Cen, we may be able to detect DM-burning WDs. We investigate the prospects of detection of DM-burning WDs in a stellar cluster harbouring an IMBH, which leads to higher d...
White dwarfs are the end products of the entire stellar evolutionary process in all intermediate an...
We discuss the recent discovery by Oppenheimer et al. of old, cool white dwarf stars, which may be t...
We consider the capture of inelastic dark matter in white dwarves by inelastic spin-independent scat...
White dwarfs (WDs) are the most promising captors of dark matter (DM) particles in the crests that a...
We discuss the consequences of the accretion of dark matter (DM) particles on compact stars such as ...
We show that a star orbiting close enough to an adiabatically grown supermassive black hole can capt...
White dwarfs, the most abundant stellar remnants, provide a promising means of probing dark matter i...
In the ΛCDM model, ≈ 26% of the matter-energy content of the Universe is in the form of an unidentif...
The empirical study of ultraheavy dark matter (DM) requires astrophysical probes. We present here a...
We show that a star orbiting close enough to an adiabatically grown supermassive black hole (SMBH) c...
Star clusters are collisional and dark matter (DM) free stellar systems, where their evolution is ru...
White dwarfs (WDs) are the final evolutionary product of the vast majority of stars in the Universe....
We show that a star orbiting close enough to an adiabatically grown supermassive black hole (SMBH) c...
Recent data and cosmological models point to a significant fraction of the Universe being comprised ...
In order to characterize how dark matter (DM) annihilation inside stars changes the aspect of a stel...
White dwarfs are the end products of the entire stellar evolutionary process in all intermediate an...
We discuss the recent discovery by Oppenheimer et al. of old, cool white dwarf stars, which may be t...
We consider the capture of inelastic dark matter in white dwarves by inelastic spin-independent scat...
White dwarfs (WDs) are the most promising captors of dark matter (DM) particles in the crests that a...
We discuss the consequences of the accretion of dark matter (DM) particles on compact stars such as ...
We show that a star orbiting close enough to an adiabatically grown supermassive black hole can capt...
White dwarfs, the most abundant stellar remnants, provide a promising means of probing dark matter i...
In the ΛCDM model, ≈ 26% of the matter-energy content of the Universe is in the form of an unidentif...
The empirical study of ultraheavy dark matter (DM) requires astrophysical probes. We present here a...
We show that a star orbiting close enough to an adiabatically grown supermassive black hole (SMBH) c...
Star clusters are collisional and dark matter (DM) free stellar systems, where their evolution is ru...
White dwarfs (WDs) are the final evolutionary product of the vast majority of stars in the Universe....
We show that a star orbiting close enough to an adiabatically grown supermassive black hole (SMBH) c...
Recent data and cosmological models point to a significant fraction of the Universe being comprised ...
In order to characterize how dark matter (DM) annihilation inside stars changes the aspect of a stel...
White dwarfs are the end products of the entire stellar evolutionary process in all intermediate an...
We discuss the recent discovery by Oppenheimer et al. of old, cool white dwarf stars, which may be t...
We consider the capture of inelastic dark matter in white dwarves by inelastic spin-independent scat...