We present a study of neutron star models that contain dark matter (DM) in the core. The DM is assumed to have a particle nature and to be self-interacting. Using constraints on the mass and radius of neutron stars, we investigate the allowed properties of either bosonic or fermionic DM particles. We consider cases where it constitutes up to 15% of the mass of the star, even though conventional mechanisms cannot generate such large fractions. For this purpose three different models of neutron stars are considered, the first involving nucleons only, the second including hyperons, and the last involving strange matter in the core. Different EoSs are constructed for the various cases of fermionic and bosonic DM. These EoSs are solved for selec...
Neutron stars change their structure with accumulation of dark matter. We study how their mass is in...
Neutron stars contain a significant number of stable muons due to the large chemical potential and d...
Formed in the aftermath of gravitational core-collapse supernova explosions, neutron stars are uniqu...
AbstractRecent observational results for the masses and radii of some neutron stars are in contrast ...
We study possible effects of a dark matter (DM) core on the maximum mass of a neutron star (NS), on ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
We calculate the number of dark matter particles that a neutron star accumulates over its lifetime a...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutora:...
International audienceDark Matter constitutes most of the matter in the presently accepted cosmologi...
In this work we investigate the tidal deformability of a neutron star admixed with dark matter, mode...
We inspect the possibility that neutron star interiors are a mixture of ordinary matter and mirror d...
We propose a model of asymmetric bosonic dark matter (DM) with self-repulsion mediated by the vector...
We propose a dark-matter (DM) admixed density-dependent equation of state where the fermionic DM int...
We study the mass-radius relation and the second Love number of compact objects made of ordinary mat...
Following up on a suggestion that decay to a dark matter fermion might explain the 4σ discrepancy in...
Neutron stars change their structure with accumulation of dark matter. We study how their mass is in...
Neutron stars contain a significant number of stable muons due to the large chemical potential and d...
Formed in the aftermath of gravitational core-collapse supernova explosions, neutron stars are uniqu...
AbstractRecent observational results for the masses and radii of some neutron stars are in contrast ...
We study possible effects of a dark matter (DM) core on the maximum mass of a neutron star (NS), on ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
We calculate the number of dark matter particles that a neutron star accumulates over its lifetime a...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutora:...
International audienceDark Matter constitutes most of the matter in the presently accepted cosmologi...
In this work we investigate the tidal deformability of a neutron star admixed with dark matter, mode...
We inspect the possibility that neutron star interiors are a mixture of ordinary matter and mirror d...
We propose a model of asymmetric bosonic dark matter (DM) with self-repulsion mediated by the vector...
We propose a dark-matter (DM) admixed density-dependent equation of state where the fermionic DM int...
We study the mass-radius relation and the second Love number of compact objects made of ordinary mat...
Following up on a suggestion that decay to a dark matter fermion might explain the 4σ discrepancy in...
Neutron stars change their structure with accumulation of dark matter. We study how their mass is in...
Neutron stars contain a significant number of stable muons due to the large chemical potential and d...
Formed in the aftermath of gravitational core-collapse supernova explosions, neutron stars are uniqu...