Towards Self-Consistent Modelling of the Sgr A* Accretion Flow: Linking Theory and Observation
arXiv:1611.00118 · doi:10.1093/mnras/stw2995
Abstract
The interplay between supermassive black holes (SMBHs) and their environments is believed to command an essential role in galaxy evolution. The majority of these SMBHs are in the radiative inefficient accretion phase where this interplay remains elusive, but suggestively important, due to few observational constraints. To remedy this, we directly fit 2-D hydrodynamic simulations to Chandra observations of Sgr A* with Markov Chain Monte Carlo sampling, self-consistently modelling the 2-D inflow-outflow solution for the first time. We find the temperature and density at flow onset are consistent with the origin of the gas in the stellar winds of massive stars in the vicinity of Sgr A*. We place the first observational constraints on the angular momentum of the gas and estimate the centrifugal radius, r 0.056 r pc, where r is the Bondi radius. Less than 1\% of the inflowing gas accretes onto the SMBH, the remainder being ejected in a polar outflow. For the first time, we decouple the quiescent point-like emission from the spatially extended flow. We find this point-like emission, accounting for \% of the quiescent flux, is spectrally too steep to be explained by unresolved flares, nor Bremsstrahlung, but is likely a combination of a relatively steep synchrotron powerlaw and the high energy tail of inverse-Compton emission. With this self-consistent model of the accretion flow structure, we make predictions for the flow dynamics and discuss how future X-ray spectroscopic observations can further our understanding of the Sgr A* accretion flow.
16 pages, 10 figures, MNRAS accepted
References in corpus (9)
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- An Unambiguous Detection of Faraday Rotation in Sagittarius A*
- Numerical Simulation of Hot Accretion Flows (III): Revisiting wind properties using trajectory approach
- Stellar and wind properties of massive stars in the central parsec of the Galaxy
- The X-ray Flux Distribution of Sagittarius A* as Seen by Chandra
- Stellar dynamical evidence against a cold disc origin for stars in the Galactic Centre
- The role of feedback in accretion on Low Luminosity AGN: Sgr A* case study
- Does the circularization radius exist or not for low angular momentum accretion?
- Confronting the jet model of Sgr A* with the Faraday rotation measure observations
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- A Systematic Chandra study of Sgr A: II. X-ray flare statistics
- Time delays between radio and X-ray and between narrow radio bands of Sgr A* flares in the shock oscillation model
- The X-ray variation of M81* resolved by Chandra and NuSTAR