Ab Initio Horizon-Scale Simulations of Magnetically Arrested Accretion in Sagittarius A* Fed by Stellar Winds
arXiv:2006.00005 · doi:10.3847/2041-8213/ab9532
Abstract
We present 3D general relativistic magnetohydrodynamic (GRMHD) simulations of the accretion flow surrounding Sagittarius A* that are initialized using larger-scale MHD simulations of the 30 Wolf--Rayet (WR) stellar winds in the Galactic center. The properties of the resulting accretion flow on horizon scales are set not by ad hoc initial conditions but by the observationally constrained properties of the WR winds with limited free parameters. For this initial study we assume a non-spinning black hole. Our simulations naturally produce a yr accretion rate, consistent with previous phenomenological estimates. We find that a magnetically arrested flow is formed by the continuous accretion of coherent magnetic field being fed from large radii. Near the event horizon, the magnetic field is so strong that it tilts the gas with respect to the initial angular momentum and concentrates the originally quasi-spherical flow to a narrow disk-like structure. We also present 230 GHz images calculated from our simulations where the inclination angle and physical accretion rate are not free parameters but are determined by the properties of the WR stellar winds. The image morphology is highly time variable. Linear polarization on horizon scales is coherent with weak internal Faraday rotation.
Accepted by ApJL. 14 pages, 8 figures. Animations available at https://smressle.bitbucket.io/animations.html
References in corpus (20)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First M87 Event Horizon Telescope Results. V. Physical Origin of the Asymmetric Ring
- Event-horizon-scale structure in the supermassive black hole candidate at the Galactic Centre
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- An Update on Monitoring Stellar Orbits in the Galactic Center
- An Unambiguous Detection of Faraday Rotation in Sagittarius A*
- Stellar and wind properties of massive stars in the central parsec of the Galaxy
- Galactic Centre stellar winds and Sgr A* accretion
- Observational appearance of inefficient accretion flows and jets in 3D GRMHD simulations: Application to Sgr~A*
- The Disc-Jet Symbiosis Emerges: Modeling the Emission of Sagittarius A* with Electron Thermodynamics
- Plasma diagnostic potential of 2p4f in N -- accurate wavelengths and oscillator strengths
- The Power of Imaging: Constraining the Plasma Properties of GRMHD Simulations using EHT Observations of Sgr A*
- Variable accretion and emission from the stellar winds in the Galactic centre
- Electron and proton heating in trans-relativistic magnetic reconnection
- The Surprisingly Small Impact of Magnetic Fields On The Inner Accretion Flow of Sagittarius A* Fueled By Stellar Winds
- Accretion of cool stellar winds on Sgr A*: another puzzle of the Galactic Centre?
- A Resolution Study of Magnetically Arrested Disks
- Tilted Disks around Black Holes: A Numerical Parameter Survey for Spin and Inclination Angle
- Stellar winds pump the heart of the Milky Way
- On the Comparison of AGN with GRMHD Simulations: I. Sgr A*
Cited by in corpus (26)
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- First Sagittarius A* Event Horizon Telescope Results. VI: Testing the Black Hole Metric
- First Sagittarius A* Event Horizon Telescope Results. V. Testing Astrophysical Models of the Galactic Center Black Hole
- Sgr A* near-infrared flares from reconnection events in a magnetically arrested disc
- Polarimetry and Astrometry of NIR Flares as Event Horizon Scale, Dynamical Probes for the Mass of Sgr A*
- Magnetically Modified Spherical Accretion in GRMHD: Reconnection-Driven Convection and Jet Propagation
- Spectral and Imaging properties of Sgr A* from High-Resolution 3D GRMHD Simulations with Radiative Cooling
- GRMHD Simulations and Modeling for Jet Formation and Acceleration Region in AGNs
- The intrinsic structure of Sagittarius A* at 1.3 cm and 7 mm
- Two-Temperature GRMHD Simulations of Black Hole Accretion Flows with Multiple Magnetic Loops
- AGN Feeding and Feedback in M84: From Kiloparsec Scales to the Bondi Radius
- Accretion of the relativistic Vlasov gas in the equatorial plane of the Kerr black hole
- Relative depolarization of the black hole photon ring in GRMHD models of Sgr A* and M87*
- Accretion of a Vlasov gas on to a black hole from a sphere of finite radius and the role of angular momentum
- A "coronal-mass-ejection'' model for flares in Sagittarius A*
- Magnetic Reconnection in Black-Hole Magnetospheres: Lepton Loading into Jets, Superluminal Radio Blobs, and Multi-wavelength Flares
- Implications from the velocity profile of the M87 jet: a possibility of a slowly rotating black hole magnetosphere
- Flares and their echoes can help distinguish photon rings from black holes with space-Earth very long baseline interferometry
- The Relationship Between Simulated Sub-Millimeter and Near-Infrared Images of Sagittarius A* from a Magnetically Arrested Black Hole Accretion Flow
- Magnetic field structure in the vicinity of a super-massive black hole in low luminosity galaxies: the case of Sgr A*
- Effects of Hydrogen vs. Helium on Electromagnetic Black Hole Observables
- Hydrodynamic Evolution of Sgr A East: The Imprint of A Supernova Remnant in the Galactic Center
- Monitoring the Size and Flux Density of Sgr A* during the Active State in 2019 with East Asian VLBI Network
- The Effects of Resolution on Black Hole Accretion Simulations of Jets
- Diverse Polarimetric Features of AGN Jets from Various Viewing Angles: Towards a Unified View
- PATOKA: Simulating Electromagnetic Observables of Black Hole Accretion