The properties of hypervelocity stars and S-stars originating from an eccentric disc around a supermassive black hole
arXiv:1606.09247 · doi:10.3847/0004-637X/828/1/1
Abstract
Hypervelocity stars (HVSs) that are observed in the Galactic halo, are believed to be accelerated to large velocities by a process of tidal disruption of binary stars passing close to a supermassive black hole (SMBH) which resides in the center of the Galaxy. It is, however, still unclear, where these relatively young stars were born and which dynamical process pushed them to nearly radial orbits around the SMBH. In this paper we investigate the possibility that the young binaries originated from a thin eccentric disc, similar to the one observed in the Galactic center nowadays. By means of direct N-body simulations, we follow the dynamical evolution of an initially thin and eccentric disc of stars with a 100% binary fraction orbiting around the SMBH. Such a configuration leads to Kozai-Lidov oscillations of orbital elements, bringing considerable amount of binaries to close vicinity of the black hole. Subsequent tidal disruption of these binaries accelerates one of their component to velocities well above the escape velocity from the SMBH while the second component becomes tightly bound to the SMBH. We describe the main kinematic properties of the escaping and tightly bound stars within our model and compare them qualitatively to the properties of the observed HVSs and S-stars, respectively. The most prominent feature is a strong anisotropy in the directions of the escaping stars which is observed for the Galactic HVSs but not explained yet.
accepted for publication in ApJ
References in corpus (8)
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- Hypervelocity Stars: From the Galactic Center to the Halo
- Dynamical evolution of the young stars in the Galactic center: N-body simulations of the S-stars
- Secular Evolution Of Binaries Near Massive Black Holes: Formation of compact binaries, merger/collision products and G2-like objects
- Enhanced activity of massive black holes by stellar capture assisted by a self-gravitating accretion disc
- Origin of the S Stars in the Galactic Center
- Isolated massive stars in the Galactic center: The dynamic contribution from the Arches and Quintuplet star clusters
- Two-body relaxation driven evolution of the young stellar disc in the Galactic Centre
Cited by in corpus (7)
- Tidal breakup of triple stars in the Galactic Centre
- The luminosity function of quasars by the Principle of Maximum Entropy
- Intermediate-Mass Black Holes in binary-rich star clusters
- Forming Young and Hypervelocity Stars in the Galactic Centre via Tidal Disruption of a Molecular Cloud
- Evolution of eccentric stellar disks around supermassive black holes: the complex disk disruption dynamics and the milliparsec stars
- Orbital Dynamics with the Gravitational Perturbation due to a Disk
- Coronal heating problem solution by means of axion origin photons