We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible changes of tidal deformability, maximum mass, radius, and matter distribution inside the star. The conditions at which dark matter particles tend to condensate in the star’s core or create an extended halo are presented. We show that dark matter condensed in a core leads to a decrease of the total gravitational mass and tidal deformability compared to a pure baryonic star, which we will perceive as an effective softening of the equation of state. On the other hand, the presence of a dark matter halo increases those observable quantities. Thus, observational data on compact stars could be affected by accumulated dark matter and, consequently,...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
Abstract. We report recent results on the impact of asymmetric dark matter (DM) particles on low-mas...
As compact binary star systems move inside the halo of the galaxies, they interact with dark matter ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
We propose a model of asymmetric bosonic dark matter (DM) with self-repulsion mediated by the vector...
Neutron stars change their structure with accumulation of dark matter. We study how their mass is in...
We study possible effects of a dark matter (DM) core on the maximum mass of a neutron star (NS), on ...
We present a study of neutron star models that contain dark matter (DM) in the core. The DM is assum...
We calculate the number of dark matter particles that a neutron star accumulates over its lifetime a...
AbstractRecent observational results for the masses and radii of some neutron stars are in contrast ...
We inspect the possibility that neutron star interiors are a mixture of ordinary matter and mirror d...
In this work we investigate the tidal deformability of a neutron star admixed with dark matter, mode...
Formed in the aftermath of gravitational core-collapse supernova explosions, neutron stars are uniqu...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutora:...
International audienceWe discuss the consequences of the accretion of dark matter (DM) particles on ...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
Abstract. We report recent results on the impact of asymmetric dark matter (DM) particles on low-mas...
As compact binary star systems move inside the halo of the galaxies, they interact with dark matter ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
We propose a model of asymmetric bosonic dark matter (DM) with self-repulsion mediated by the vector...
Neutron stars change their structure with accumulation of dark matter. We study how their mass is in...
We study possible effects of a dark matter (DM) core on the maximum mass of a neutron star (NS), on ...
We present a study of neutron star models that contain dark matter (DM) in the core. The DM is assum...
We calculate the number of dark matter particles that a neutron star accumulates over its lifetime a...
AbstractRecent observational results for the masses and radii of some neutron stars are in contrast ...
We inspect the possibility that neutron star interiors are a mixture of ordinary matter and mirror d...
In this work we investigate the tidal deformability of a neutron star admixed with dark matter, mode...
Formed in the aftermath of gravitational core-collapse supernova explosions, neutron stars are uniqu...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutora:...
International audienceWe discuss the consequences of the accretion of dark matter (DM) particles on ...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
Abstract. We report recent results on the impact of asymmetric dark matter (DM) particles on low-mas...
As compact binary star systems move inside the halo of the galaxies, they interact with dark matter ...