Black-Hole Spin Dependence in the Light Curves of Tidal Disruption Events
arXiv:1207.6401 · doi:10.1103/PhysRevD.86.064026
Abstract
A star orbiting a supermassive black hole can be tidally disrupted if the black hole's gravitational tidal field exceeds the star's self gravity at pericenter. Some of this stellar tidal debris can become gravitationally bound to the black hole, leading to a bright electromagnetic flare with bolometric luminosity proportional to the rate at which material falls back to pericenter. In the Newtonian limit, this flare will have a light curve that scales as t^-5/3 if the tidal debris has a flat distribution in binding energy. We investigate the time dependence of the black-hole mass accretion rate when tidal disruption occurs close enough the black hole that relativistic effects are significant. We find that for orbits with pericenters comparable to the radius of the marginally bound circular orbit, relativistic effects can double the peak accretion rate and halve the time it takes to reach this peak accretion rate. The accretion rate depends on both the magnitude of the black-hole spin and its orientation with respect to the stellar orbit; for orbits with a given pericenter radius in Boyer-Lindquist coordinates, a maximal black-hole spin anti-aligned with the orbital angular momentum leads to the largest peak accretion rate.
16 pages, 15 figures, 1 table, PRD published version
References in corpus (6)
- Constraining Black Hole Spin Via X-ray Spectroscopy
- An ultraviolet-optical flare from the tidal disruption of a helium-rich stellar core
- Stellar disruption by a supermassive black hole: is the light curve really proportional to ?
- The Evolution of Black Hole Mass and Spin in Active Galactic Nuclei
- UV/Optical Detections of Candidate Tidal Disruption Events by GALEX and CFHTLS
- Candidate tidal disruption events from the XMM-Newton Slew Survey
Cited by in corpus (45)
- Tidal Disruption Events
- Rates of Stellar Tidal Disruption as Probes of the Supermassive Black Hole Mass Function
- Weighing Black Holes using Tidal Disruption Events
- The Superluminous Transient ASASSN-15lh as a Tidal Disruption Event from a Kerr Black Hole
- Consequences of Strong Compression in Tidal Disruption Events
- Discovery of an outflow from radio observations of the tidal disruption event ASASSN-14li
- Optical-Ultraviolet Tidal Disruption Events
- A Dark Year for Tidal Disruption Events
- Swift J1112.2-8238: A Candidate Relativistic Tidal Disruption Flare
- Black hole masses of tidal disruption event host galaxies
- Measurement of the rate of stellar tidal disruption flares
- Simulating realistic disc formation in tidal disruption events
- Science objectives of the Einstein Probe mission
- Stellar Tidal Disruption Events in General Relativity
- Tidal disruptions by rotating black holes: effects of spin and impact parameter
- GRRMHD Simulations of Tidal Disruption Event Accretion Disks around Supermassive Black Holes: Jet Formation, Spectra, and Detectability
- Disk Winds as an Explanation for Slowly Evolving Temperatures in Tidal Disruption Events
- Continuum-Fitting the X-ray Spectra of Tidal Disruption Events
- Radio observations of the tidal disruption event XMMSL1 J074085
- Relativistic effects on tidal disruption kicks of solitary stars
- X-rays from the location of the Bactrian Transient ASASSN-15lh
- Tidal disruptions by rotating black holes: relativistic hydrodynamics with Newtonian codes
- Thawing the frozen-in approximation: implications for self-gravity in deeply plunging tidal disruption events
- Tidal Disruptions of White Dwarfs: Theoretical Models and Observational Prospects
- Tidal disruption of a star in the Schwarzschild spacetime: relativistic effects in the return rate of debris
- SRG/eROSITA prospects for the detection of stellar tidal disruption flares
- The Process of Stellar Tidal Disruption by Supermassive Black Holes. The first pericenter passage
- Long-Term Decline of the Mid-Infrared Emission of Normal Galaxies: Dust Echo of Tidal Disruption Flare?
- Tidal Disruptions of Main Sequence Stars of Varying Mass and Age: Inferences from the Composition of the Fallback Material
- A unified treatment of tidal disruption by Schwarzschild black holes
- Challenges in the modelling of tidal disruption events lightcurves
- A Bright First Day for Tidal Disruption Event
- Tidal Disruption Events through the Lens of the Cooling Envelope Model
- Ultra-deep tidal disruption events: prompt self-intersections and observables
- Compact object mergers: Observations of supermassive binary black holes and stellar tidal disruption events
- The mass fallback rate of the debris in relativistic stellar tidal disruption events
- Extreme Accretion Events: TDEs and Changing-Look AGN
- Simulating extreme-mass-ratio systems in full general relativity
- A new X-ray tidal disruption event candidate with fast variability
- The effect of relativistic precession on light curves of tidal disruption events
- Menus for Feeding Black Holes
- Tidal disruption near black holes and their mimickers
- Relativistic accretion disc in tidal disruption events
- Physics in precision-dependent normal neighborhoods
- Partial tidal disruption of White Dwarfs in off-equatorial orbits around Kerr black holes