A stellar fly-by close to the Galactic centre: Can we detect stars on highly-relativistic orbits?
arXiv:1804.11014 · doi:10.1002/asna.201813499
Abstract
The Galactic centre Nuclear Star Cluster is one of the densest stellar clusters in the Galaxy. The stars in its inner portions orbit the supermassive black hole associated with compact radio source Sgr~A* at the orbital speeds of several thousand km/s. The B-type star S2 is currently the best case to test the general relativity as well as other theories of gravity based on its stellar orbit. Yet its orbital period of and the eccentricity of yields the relativistic pericentre shift of , which is observationally still difficult to reliably measure due to possible Newtonian perturbations as well as reference-frame uncertainties. A naive way to solve this problem is to find stars with smaller pericentre distances, Schwarzschild radii (), and thus more prominent relativistic effects. In this contribution, we show that to detect stars on relativistic orbits is progressively less likely given the volume shrinkage and the expected stellar density distributions. Finally, one arrives to a sparse region, where the total number of bright stars is expected to fall below one. One can, however, still potentially detect stars crossing this region. In this contribution, we provide a simple formula for the detection probability of a star crossing a sparse region. We also examine an approximate time-scale on which the star reappears in the sparse region, i.e. a "waiting" time-scale for observers.
7 pages, 6 figures, 2 tables, accepted by the Astronomical Notes as a contribution to the proceedings of the IBWS 2018 workshop (Carlsbad, https://www.ibws.cz/), added references
References in corpus (9)
- An Update on Monitoring Stellar Orbits in the Galactic Center
- The Milky Way's Supermassive Black Hole: How good a case is it? A Challenge for Astrophysics & Philosophy of Science
- Twelve years of spectroscopic monitoring in the Galactic Center: the closest look at S-stars near the black hole
- The nuclear cluster of the Milky Way: Our primary testbed for the interaction of a dense star cluster with a massive black hole
- Investigating the Relativistic Motion of the Stars Near the Supermassive Black Hole in the Galactic Center
- The S-Star Cluster at the Center of the Milky Way: On the nature of diffuse NIR emission in the inner tenth of a parsec
- Bright X-ray flares from Sgr A*
- Post-Keplerian effects on radial velocity in binary systems and the possibility of measuring General Relativity with the S2 star in 2018
- The X-ray footprint of the CircumNuclear Disk
Cited by in corpus (4)
- Stellar transits across a magnetized accretion torus as a mechanism for plasmoid ejection
- S62 and S4711: Indications of a population of faint fast moving stars inside the S2 orbit -- S4711 on a 7.6 year orbit around Sgr~A*
- PPN motion of the S-stars around Sgr A*
- Electromagnetic signatures of strong-field gravity from accreting black holes