Dark matter (DM) with self-interactions is a promising solution for the small-scale problems of the standard cosmological model. Here we perform the first cosmological simulation of frequent DM self-interactions, corresponding to small-angle DM scatterings. The focus of our analysis lies in finding and understanding differences to the traditionally assumed rare DM (large-angle) self scatterings. For this purpose, we compute the distribution of DM densities, the matter power spectrum, the two-point correlation function and the halo and subhalo mass functions. Furthermore, we investigate the density profiles of the DM haloes and their shapes. We find that overall large-angle and small-angle scatterings behave fairly similarly with a few excep...
Self-interacting dark matter (DM) has been proposed as a solution to small scale problems in cosmolo...
We perform a high-resolution cosmological zoom-in simulation of a Milky Way (MW)-like system, which ...
When a darkmatter halomoves through a background of darkmatter particles, self-interactions can lead...
Dark matter (DM) with self-interactions is a promising solution for the small-scale problems of the ...
Dark matter (DM) self-interactions have been proposed to solve problems on small length scales withi...
In this thesis we study the astrophysical implication of self-interacting dark matter. Observations ...
The standard model of cosmology assumes that dark matter (DM) is cold and collisionless. This collis...
We present results from N-body simulations of self-interacting dark matter (SIDM) subhalos, which co...
We use high-resolution hydrodynamical simulation to test the difference of halo properties in cold d...
In this thesis I study how dark matter particles that interact through forces other than just gravit...
Self-interacting dark matter (SIDM) models have the potential to solve the small-scale problems that...
Dark matter (DM) self-interactions have important implications for the formation and evolution of st...
The abundance, distribution and inner structure of satellites of galaxy clusters can be sensitive pr...
Self-interacting dark matter (DM) has been proposed as a solution to small scale problems in cosmolo...
We perform a high-resolution cosmological zoom-in simulation of a Milky Way (MW)-like system, which ...
When a darkmatter halomoves through a background of darkmatter particles, self-interactions can lead...
Dark matter (DM) with self-interactions is a promising solution for the small-scale problems of the ...
Dark matter (DM) self-interactions have been proposed to solve problems on small length scales withi...
In this thesis we study the astrophysical implication of self-interacting dark matter. Observations ...
The standard model of cosmology assumes that dark matter (DM) is cold and collisionless. This collis...
We present results from N-body simulations of self-interacting dark matter (SIDM) subhalos, which co...
We use high-resolution hydrodynamical simulation to test the difference of halo properties in cold d...
In this thesis I study how dark matter particles that interact through forces other than just gravit...
Self-interacting dark matter (SIDM) models have the potential to solve the small-scale problems that...
Dark matter (DM) self-interactions have important implications for the formation and evolution of st...
The abundance, distribution and inner structure of satellites of galaxy clusters can be sensitive pr...
Self-interacting dark matter (DM) has been proposed as a solution to small scale problems in cosmolo...
We perform a high-resolution cosmological zoom-in simulation of a Milky Way (MW)-like system, which ...
When a darkmatter halomoves through a background of darkmatter particles, self-interactions can lead...