To date, the presence of dark matter (DM) can be judged only by its gravitational interaction on the visible matter. It is therefore important to find the consequences of this interaction, which can then help to determine both the DM properties and parameters and the dynamics and evolution of visible matter. The gravitational influence of dark matter on the stability of interstellar medium (ISM), the progenitor of stars and star clusters, was considered. An isothermal self-gravity gas was taken as a suitable model describing ISM, particles interacting only gravitationally were considered as DM. The results obtained by analytical methods show that even a small amount of fast DM particles significantly increases the stable radius of the gas c...
According to the current concordance cosmological model, the dark matter (DM) particles are collisio...
Cosmological and astrophysical observations, yet all gravitational, suggest that there exists stable...
The currently favored cosmological model suggests that over 85% of the matter in our universe is dar...
Dark matter annihilation might power the first luminous stars in the Universe. This type of stars, k...
The fundamental properties of the postulated dark matter (DM) affect the internal structure of gravi...
Self-interaction of particulate dark matter may help thermalising the central region of the galactic...
AbstractIn this study, we investigate a scenario that dark matter (DM) has only gravitational intera...
As compact binary star systems move inside the halo of the galaxies, they interact with dark matter ...
We propose a model of asymmetric bosonic dark matter (DM) with self-repulsion mediated by the vector...
We study the imprints of secluded dark sectors with a mass gap and self-interactions on the matter p...
The stability of nonrotating supermassive stars (M > 105 M⊙) in the presence of a small dark matt...
Thesis (Ph.D.)--University of Washington, 2023Overwhelming observational evidence suggests that 85$\...
From the particle physics point of view, the most peculiar property of the dark matter particle is i...
This paper contributes an extensive analysis of Dark Matter (DM) along with associated materials reg...
We investigate a simple model for a galactic halo under the assumption that it is dominated by a dar...
According to the current concordance cosmological model, the dark matter (DM) particles are collisio...
Cosmological and astrophysical observations, yet all gravitational, suggest that there exists stable...
The currently favored cosmological model suggests that over 85% of the matter in our universe is dar...
Dark matter annihilation might power the first luminous stars in the Universe. This type of stars, k...
The fundamental properties of the postulated dark matter (DM) affect the internal structure of gravi...
Self-interaction of particulate dark matter may help thermalising the central region of the galactic...
AbstractIn this study, we investigate a scenario that dark matter (DM) has only gravitational intera...
As compact binary star systems move inside the halo of the galaxies, they interact with dark matter ...
We propose a model of asymmetric bosonic dark matter (DM) with self-repulsion mediated by the vector...
We study the imprints of secluded dark sectors with a mass gap and self-interactions on the matter p...
The stability of nonrotating supermassive stars (M > 105 M⊙) in the presence of a small dark matt...
Thesis (Ph.D.)--University of Washington, 2023Overwhelming observational evidence suggests that 85$\...
From the particle physics point of view, the most peculiar property of the dark matter particle is i...
This paper contributes an extensive analysis of Dark Matter (DM) along with associated materials reg...
We investigate a simple model for a galactic halo under the assumption that it is dominated by a dar...
According to the current concordance cosmological model, the dark matter (DM) particles are collisio...
Cosmological and astrophysical observations, yet all gravitational, suggest that there exists stable...
The currently favored cosmological model suggests that over 85% of the matter in our universe is dar...