Sagittarius A* near-infrared flares polarization as a probe of space-time I: Non-rotating exotic compact objects
arXiv:2506.23931 · doi:10.1051/0004-6361/202557669
Abstract
The center of our galaxy hosts Sagittarius~A*, a supermassive compact object of solar masses, usually associated with a black hole. Nevertheless, black holes possess a central singularity, considered unphysical, and an event horizon, which leads to loss of unitarity in a quantum description of the system. To address these theoretical inconsistencies, alternative models, collectively known as exotic compact objects, have been proposed. In this paper, we investigate the potential detectability of signatures associated with non-rotating exotic compact objects within the Sgr~A* polarized flares dataset, as observed through GRAVITY and future instruments. We examine a total of eight distinct metrics, originating from four different categories of static and spherically symmetric compact objects: Black Holes, Boson stars, Fluid spheres, and Gravastars. Our approach involves utilizing a toy model that orbits the compact object in the equatorial plane. Using simulated astrometric and polarimetric data with present GRAVITY and future GRAVITY+ uncertainties, we fit the datasets across all metrics examined. We evaluated the detectability of the metric for each dataset based on the resulting and BIC-based Bayes factors. Plunge-through images of ECOs affect polarization and astrometry. With GRAVITY's present uncertainties, none of the metric model is discernible. GRAVITY+'s improved sensitivity allows detection of some exotic compact object models. However, enhancing the astrophysical complexity of the hot spot model diminishes these outcomes. Presently, GRAVITY's uncertainties do not allow us to detect exotic compact object metric. With GRAVITY+'s enhanced sensitivity, we can expect to uncover additional exotic compact object models and use Sgr~A* as a laboratory for fundamental physics.
16 pages, 11 figures, 10 tables; final revision for A&A; major changes
References in corpus (41)
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- Horizon-scale tests of gravity theories and fundamental physics from the Event Horizon Telescope image of Sagittarius A
- First Sagittarius A* Event Horizon Telescope Results. VI: Testing the Black Hole Metric
- Detection of the Schwarzschild precession in the orbit of the star S2 near the Galactic centre massive black hole
- The mass distribution in the Galactic Centre from interferometric astrometry of multiple stellar orbits
- Flaring Activity of Sgr A* at 43 and 22 GHz: Evidence for Expanding Hot Plasma
- A Constant Spectral Index for Sagittarius A* During Infrared/X-ray Intensity Variations
- Radio and Millimeter Monitoring of Sgr A*: Spectrum, Variability, and Constraints on the G2 Encounter
- Macroscopic Effects of the Quantum Trace Anomaly
- Imaging compact boson stars with hot-spots and thin accretion disks
- Exotic Compact Objects and the Fate of the Light-Ring Instability
- 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*
- NuSTAR detection of high-energy X-ray emission and rapid variability from Sagittarius A* flares
- Distinguishing black holes and wormholes with orbiting hot spots
- Dynamically important magnetic fields near the event horizon of Sgr A*
- ALMA and VLA measurements of frequency-dependent time lags in Sagittarius A*: evidence for a relativistic outflow
- Constraining particle acceleration in Sgr A* with simultaneous GRAVITY, Spitzer, NuSTAR and Chandra observations
- The Flux Distribution of Sgr A*
- Testing black hole mimickers with the Event Horizon Telescope image of Sagittarius A
- Spitzer/IRAC Observations of the Variability of Sgr A* and the Object G2 at 4.5 microns
- Magnetic reconnection plasmoid model for Sagittarius A* flares
- Using the motion of S2 to constrain scalar clouds around SgrA*
- Observational imprints of gravastars from accretion disks and hot-spots
- The Galactic Center as a laboratory for theories of gravity and dark matter
- Existence and stability of relativistic fluid spheres supported by thin shells
- Updated Transfer Coefficients for Magnetized Plasmas
- Fitting the light curves of Sagittarius A* with a hot-spot model
- Exploring Nonlinear Electrodynamics Theories: Shadows of Regular Black Holes and Horizonless Ultra-Compact Objects
- A "coronal-mass-ejection'' model for flares in Sagittarius A*
- Detecting Axion Dark Matter with Black Hole Polarimetry
- Distinguishing an ejected blob from alternative flare models at the Galactic centre with GRAVITY
- Observational properties of hot-spots orbiting relativistic fluid spheres
- Hot-spots around Sagittarius A*: Joint fits to astrometry and polarimetry
- Testing a class of non-Kerr metrics with hot spots orbiting SgrA
- Shadow behavior of an EMSG charged black hole
- Parameter study for hot spot trajectories around Sgr
- Stationary BTZ space-time in Ricci-Inverse and gravity theories
- Exploring the presence of a fifth force at the Galactic Center
- Investigating non-Keplerian motion in flare events with astrometric data
- Quantum Gravitational Hair in Gravastars and Observational Tests