GRMHD simulations of accretion onto Sgr A*: How important are radiative losses?
arXiv:1206.3976 · doi:10.1111/j.1365-2966.2012.21857.x
Abstract
We present general relativistic magnetohydrodynamic (GRMHD) numerical simulations 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^{-8} Msun/yr i.e. Mdot < 10^{-7} Mdot_Edd. But above this limit, we show that radiative losses should be taken into account as significant differences appear in the dynamics and the resulting spectra when comparing simulations with and without cooling. This limit implies that most nearby low-luminosity active galactic nuclei are in the regime where cooling should be taken into account. We further make a parameter study of axisymmetric gas accretion around the supermassive black hole at the Galactic centre. This approach allows us to investigate the physics of gas accretion in general, while confronting our results with the well studied and observed source, Sgr A*, as a test case. We confirm that the nature of the accretion flow and outflow is strongly dependent on the initial geometry of the magnetic field. For example, we find it difficult, even with very high spins, to generate powerful outflows from discs threaded with multiple, separate poloidal field loops.
Resubmitted to MNRAS, including modifications in response to referee report. 13 pages, 15 figures
References in corpus (8)
- Event-horizon-scale structure in the supermassive black hole candidate at the Galactic Centre
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- An Unambiguous Detection of Faraday Rotation in Sagittarius A*
- The Influence of Magnetic Field Geometry on the Evolution of Black Hole Accretion Flows: Similar Disks, Drastically Different Jets
- The Submillimeter Bump in Sgr A* from Relativistic MHD Simulations
- Magnetically Arrested Disks and Origin of Poynting Jets: Numerical Study
- Numerical Simulations of Optically Thick Accretion onto a Black Hole - I. Spherical Case
- Modelling the black hole silhouette in Sgr A* with ion tori
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