Tidal disruption events, main-sequence extreme-mass ratio inspirals and binary star disruptions in galactic nuclei
arXiv:1907.03312 · doi:10.3847/1538-4357/ab43df
Abstract
The Galactic Center has been under intense scrutiny in the recent years thanks to the unprecedented missions aiming at measuring the gas and star dynamics near the supermassive black hole (SMBH) and at finding gravitational wave (GW) signatures of inspiralling stellar black holes. In the crowded environment of galactic nuclei, the two-body interactions alter the distribution of stars on long timescales, making them drift in energy and angular momentum. We present a simplified analytical treatment of the scattering processes in galactic stellar nuclei, assuming all stars have the same mass. We have discussed how the interplay between two-body relaxation and gravitational wave emission modifies the slope of the inner stellar cusp within the SMBH sphere of influence, and calculated the rates of tidal disruption events (TDEs) and main-sequence extreme-mass ratio inspirals (MS-EMRIs) of stars that are tidally disrupted by the SMBH. We find that typically the ratio of the TDE and MS-EMRI rates is the square of the ratio of the tidal and Schwarzschild radii. For our Galaxy, this implies that the rate of MS-EMRIs is just about a percent of the TDE rate. We then consider the role of stars injected on highly eccentric orbits in the vicinity of the SMBH due to Hills binary disruption mechanism, and show that the MS-EMRI rate can almost approach the TDE rate if the binary fraction at the SMBH influence radius is close to unity. Finally, we discuss that physical stellar collisions affect a large area of phase space.
9 pages, 4 figures, accepted by ApJ
References in corpus (17)
- An Update on Monitoring Stellar Orbits in the Galactic Center
- N-body modeling of globular clusters: Masses, mass-to-light ratios and intermediate-mass black holes
- Dynamical evolution of the young stars in the Galactic center: N-body simulations of the S-stars
- The Fate of Binaries in the Galactic Center: The Mundane and the Exotic
- Red giant stellar collisions in the Galactic Centre
- A numerical study of vector resonant relaxation
- Binary dynamics near a massive black hole
- Collisions and close encounters involving massive main-sequence stars
- Black hole and neutron star mergers in Galactic Nuclei: the role of triples
- The impact of mass segregation and star-formation on the rates of gravitational-wave sources from extreme mass ratio inspirals
- Hypervelocity stars from young stellar clusters in the Galactic Centre
- Steeper stellar cusps in galactic centers from binary disruption
- The statistical mechanics of relativistic orbits around a massive black hole
- Massive binary star mergers in galactic nuclei: implications for blue stragglers, binary S-stars and gravitational waves
- Tidal breakup of triple stars in the Galactic Centre
- A comparison of hydrodynamics techniques for modelling collisions between main sequence stars
- Flying far and fast: the distribution of distant hypervelocity star candidates from Gaia DR2 data
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- The Hills Mechanism and the Galactic Center S-stars
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- Gravitational Waves from Hierarchical Triple Systems with Kozai-Lidov Oscillation
- Detecting Accelerating Eccentric Binaries in the LISA Band
- Stellar Distributions Around a Supermassive Black Hole: Strong Segregation Regime Revisited
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- Stellar Collisions in Galactic Nuclei: Impact on Destructive Events Near a Supermassive Black Hole
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- Dynamics around supermassive black holes: Extreme mass-ratio inspirals as gravitational-wave sources
- Probing the Spins of Supermassive Black Holes with Gravitational Waves from Surrounding Compact Binaries
- Segregation and Collisions in Galactic Nuclei: Rates of Destructive Events Near a Supermassive Black Hole
- Binary Natal Kicks in the Galactic Center: X-ray Binaries, Hypervelocity Stars, and Gravitational Waves
- Binary Stars Approaching Supermassive Black Holes: Tidal Break-up, Double Stellar Disruptions and Stellar Collision
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- The hierarchical three-body problem at