We present general relativistic magnetohydrodynamic (GRMHD) numerical simu-lations of the accretion flow around the supermassive black hole in the Galactic centre, Sagittarius A * (Sgr A*). The simulations include for the first time radiative cooling processes (synchrotron, bremsstrahlung, and inverse Compton) self-consistently in the dynamics, allowing us to test the common simplification of ignoring all cooling losses in the modeling of Sgr A*. We confirm that for Sgr A*, neglecting the cooling losses is a reasonable approximation if the Galactic centre is accreting below ∼ 10−8M yr−1 i.e. M ̇ < 10−7ṀEdd. But above this limit, we show that radiative losses should be taken into account as significant differences appear in the dynamics ...
Sagittarius A* (Sgr A*), the roughly 4 million solar mass black hole at the center of our galaxy, is...
This thesis details four different studies of accretion and emission processes around the Galactic C...
Context. The connection between black hole, accretion disk, and radio jet can be constrained best by...
We present general relativistic magnetohydrodynamic numerical simulations of the accretion flow arou...
The candidate supermassive black hole in the Galactic Centre, Sagittarius A* (Sgr A*), is known to b...
Context. Radiatively inefficient accretion flows (RIAFs) are believed to power supermassive black ho...
Context. Radiatively inefficient accretion flows (RIAFs) are believed to power supermassive black ho...
Context. Radiatively inefficient accretion flows (RIAFs) are believed to power supermassive black ho...
The compact radio source Sagittarius A* (Sgr A*) is the nearest and most-intensively-studied superma...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
Context. The supermassive black hole in the center of the Milky Way, Sgr A*, displays a nearly flat ...
Context. The supermassive black hole in the center of the Milky Way, Sgr A*, displays a nearly flat ...
Context. The supermassive black hole in the center of the Milky Way, Sgr A*, displays a nearly flat ...
The strong radio emission from Sgr A*, an object located at the dynamical center of the Milky Way, h...
The most extreme physical conditions of space-time in the Universe happen in the vicinity of accreti...
Sagittarius A* (Sgr A*), the roughly 4 million solar mass black hole at the center of our galaxy, is...
This thesis details four different studies of accretion and emission processes around the Galactic C...
Context. The connection between black hole, accretion disk, and radio jet can be constrained best by...
We present general relativistic magnetohydrodynamic numerical simulations of the accretion flow arou...
The candidate supermassive black hole in the Galactic Centre, Sagittarius A* (Sgr A*), is known to b...
Context. Radiatively inefficient accretion flows (RIAFs) are believed to power supermassive black ho...
Context. Radiatively inefficient accretion flows (RIAFs) are believed to power supermassive black ho...
Context. Radiatively inefficient accretion flows (RIAFs) are believed to power supermassive black ho...
The compact radio source Sagittarius A* (Sgr A*) is the nearest and most-intensively-studied superma...
The goal of the series of studies in this thesis is to understand the black hole accretion process a...
Context. The supermassive black hole in the center of the Milky Way, Sgr A*, displays a nearly flat ...
Context. The supermassive black hole in the center of the Milky Way, Sgr A*, displays a nearly flat ...
Context. The supermassive black hole in the center of the Milky Way, Sgr A*, displays a nearly flat ...
The strong radio emission from Sgr A*, an object located at the dynamical center of the Milky Way, h...
The most extreme physical conditions of space-time in the Universe happen in the vicinity of accreti...
Sagittarius A* (Sgr A*), the roughly 4 million solar mass black hole at the center of our galaxy, is...
This thesis details four different studies of accretion and emission processes around the Galactic C...
Context. The connection between black hole, accretion disk, and radio jet can be constrained best by...