Particle Acceleration and the Origin of X-ray Flares in GRMHD simulations of Sgr A*
arXiv:1602.05968 · doi:10.3847/0004-637X/826/1/77
Abstract
Significant X-ray variability and flaring has been observed from Sgr A* but is poorly understood from a theoretical standpoint. We perform GRMHD simulations that take into account a population of non-thermal electrons with energy distributions and injection rates that are motivated by PIC simulations of magnetic reconnection. We explore the effects of including these non-thermal electrons on the predicted broadband variability of Sgr A* and find that X-ray variability is a generic result of localizing non-thermal electrons to highly magnetized regions, where particles are likely to be accelerated via magnetic reconnection. The proximity of these high-field regions to the event horizon forms a natural connection between IR and X-ray variability and accounts for the rapid timescales associated with the X-ray flares. The qualitative nature of this variability is consistent with observations, producing X-ray flares that are always coincident with IR flares, but not vice versa, i.e., there are a number of IR flares without X-ray counterparts.
References in corpus (9)
- Non-Thermal Electron Acceleration in Low Mach Number Collisionless Shocks. I. Particle Energy Spectra and Acceleration Mechanism
- Observational appearance of inefficient accretion flows and jets in 3D GRMHD simulations: Application to Sgr~A*
- The Power of Imaging: Constraining the Plasma Properties of GRMHD Simulations using EHT Observations of Sgr A*
- Plasma diagnostic potential of 2p4f in N -- accurate wavelengths and oscillator strengths
- X-ray hiccups from SgrA* observed by XMM-Newton. The second brightest flare and three moderate flares caught in half a day
- Time Dependent Models of Flares from Sagittarius A*
- NuSTAR detection of high-energy X-ray emission and rapid variability from Sagittarius A* flares
- The X-ray Flux Distribution of Sagittarius A* as Seen by Chandra
- A Systematic Chandra study of Sgr A: I. X-ray flare detection
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- Ab Initio Horizon-Scale Simulations of Magnetically Arrested Accretion in Sagittarius A* Fed by Stellar Winds
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- First M87 Event Horizon Telescope Results. IX. Detection of Near-horizon Circular Polarization
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- The Flux Distribution of Sgr A*
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- The Properties of Reconnection Current Sheets in GRMHD Simulations of Radiatively Inefficient Accretion Flows
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- Acceleration and Escape Processes of High-energy Particles in Turbulence inside Hot Accretion Flows
- Chandra Spectral and Timing Analysis of Sgr A*'s Brightest X-ray Flares
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- Simultaneous X-ray and Infrared Observations of Sagittarius A*'s Variability
- Black Hole Images as Tests of General Relativity: Effects of Plasma Physics
- Electron and Proton Heating in Transrelativistic Guide Field Reconnection
- Spectral and Imaging properties of Sgr A* from High-Resolution 3D GRMHD Simulations with Radiative Cooling
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- A Plasmoid Model for the Sgr A* Flares Observed with GRAVITY and Chandra
- A Detection of Sgr A* in the far infrared
- Multiwavelength Light Curves of Two Remarkable Sagittarius A* Flares
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- A magnetohydrodynamic model for multi-wavelength flares from Sagittarius~A (I): model and the near-infrared and X-ray flares
- Towards Self-Consistent Modelling of the Sgr A* Accretion Flow: Linking Theory and Observation
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- A Possible Model for the Long-Term Flares of Sgr A*
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- General relativistic effects and the near-infrared and X-ray variability of Sgr A* I
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- PATOKA: Simulating Electromagnetic Observables of Black Hole Accretion