Hot-spots around Sagittarius A*: Joint fits to astrometry and polarimetry
arXiv:2408.07120 · doi:10.1051/0004-6361/202451884
Abstract
Observations of Sagittarius A* (Sgr A*) in near-infrared (NIR) show irregular flaring activity. Flares coincide with astrometric rotation of brightness centroid and with looping patterns in fractional linear polarization. These signatures can be explained with a model of a bright hot-spot, transiently orbiting the black hole. We extend the capabilities of the existing algorithms to perform parameter estimation and model comparison in the Bayesian framework using NIR observations from the GRAVITY instrument, and simultaneously fitting to the astrometric and polarimetric data. Using the numerical radiative transfer code ipole, we defined several geometric models describing a hot-spot orbiting Sgr A*, threaded with magnetic field, and emitting synchrotron radiation. We then explored the posterior space of our models in the Bayesian framework with a nested sampling code dynesty. We have used 11 models to sharpen our understanding of the importance of various aspects of the orbital model, such as non-Keplerian motion, hot-spot size, and off-equatorial orbit. All considered models converge to realizations that fit the data well, but the equatorial super-Keplerian model is favored by the currently available NIR dataset. We have inferred an inclination of ~ 155 deg, which corroborates previous estimates, a preferred period of ~ 70 minutes, and an orbital radius of ~ 12 gravitational radii with the orbital velocity of ~ 1.3 times the Keplerian value. A hot-spot of a diameter smaller than 5 gravitational radii is favored. Black hole spin is not constrained well.
References in corpus (25)
- 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. II. EHT and Multi-wavelength Observations, Data Processing, and Calibration
- The mass distribution in the Galactic Centre from interferometric astrometry of multiple stellar orbits
- Black hole flares: ejection of accreted magnetic flux through 3D plasmoid-mediated reconnection
- Magnetic Reconnection and Hot Spot Formation in Black Hole Accretion Disks
- Key Science Goals for the Next-Generation Event Horizon Telescope
- Flares in the Galactic center I: orbiting flux tubes in Magnetically Arrested Black Hole Accretion Disks
- A polarised infrared flare from Sagittarius A* and the signatures of orbiting plasma hotspots
- Modeling the orbital motion of Sgr A*'s near-infrared flares
- Sgr A* near-infrared flares from reconnection events in a magnetically arrested disc
- Millimeter light curves of Sagittarius A* observed during the 2017 Event Horizon Telescope campaign
- Orbital motion near Sagittarius A* -- Constraints from polarimetric ALMA observations
- Polarimetry and Astrometry of NIR Flares as Event Horizon Scale, Dynamical Probes for the Mass of Sgr A*
- Polarized Image of Equatorial Emission in the Kerr Geometry
- Dynamically important magnetic fields near the event horizon of Sgr A*
- The Flux Distribution of Sgr A*
- Spacetime Tomography Using The Event Horizon Telescope
- Polarimetric signatures of hot spots in black hole accretion flows
- The origin of hotspots around Sgr A*: Orbital or pattern motion?
- Magnetic reconnection plasmoid model for Sagittarius A* flares
- The internal Faraday screen of Sagittarius A*
- Fitting the light curves of Sagittarius A* with a hot-spot model
- Rotation in Event Horizon Telescope Movies
- A "coronal-mass-ejection'' model for flares in Sagittarius A*
- Parameter study for hot spot trajectories around Sgr
Cited by in corpus (6)
- Forward Ray Tracing and Hot Spots in Kerr Spacetime
- Deep learning inference with the Event Horizon Telescope III. Zingularity results from the 2017 observations and predictions for future array expansions
- Investigating non-Keplerian motion in flare events with astrometric data
- Full-polarization millimeter wavelength variability of Sagittarius A* during the 2018 EHT campaign
- Polarization Signatures of Inspiraling Hotspots around Kerr Black Holes
- Sagittarius A* near-infrared flares polarization as a probe of space-time I: Non-rotating exotic compact objects