General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
arXiv:1501.04365 · doi:10.1088/0004-637X/804/2/85
Abstract
We study how the matter dispersed when a supermassive black hole tidally disrupts a star joins an accretion flow. Combining a relativistic hydrodynamic simulation of the stellar disruption with a relativistic hydrodynamics simulation of the tidal debris motion, we track such a system until ~80% of the stellar mass bound to the black hole has settled into an accretion flow. Shocks near the stellar pericenter and also near the apocenter of the most tightly-bound debris dissipate orbital energy, but only enough to make the characteristic radius comparable to the semi-major axis of the most-bound material, not the tidal radius as previously thought. The outer shocks are caused by post-Newtonian effects, both on the stellar orbit during its disruption and on the tidal forces. Accumulation of mass into the accretion flow is non-monotonic and slow, requiring ~3--10x the orbital period of the most tightly-bound tidal streams, while the inflow time for most of the mass may be comparable to or longer than the mass accumulation time. Deflection by shocks does, however, remove enough angular momentum and energy from some mass for it to move inward even before most of the mass is accumulated into the accretion flow. Although the accretion rate rises sharply and then decays roughly as a power-law, its maximum is ~0.1x the previous expectation, and the duration of the peak is ~5x longer than previously predicted. The geometric mean of the black hole mass and stellar mass inferred from a measured event timescale is therefore ~0.2x the value given by classical theory.
References in corpus (7)
- A Continuum of H- to He-Rich Tidal Disruption Candidates With a Preference for E+A Galaxies
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- Stellar disruption by a supermassive black hole: is the light curve really proportional to ?
- Measurement of the rate of stellar tidal disruption flares
- Illuminating Massive Black Holes With White Dwarfs: Orbital Dynamics and High Energy Transients from Tidal Interactions
- Shock waves in tidally compressed stars by massive black holes
- Tidal disruption of a star in the Schwarzschild spacetime: relativistic effects in the return rate of debris
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- Are Delayed Radio Flares Common in Tidal Disruption Events? The Case of the TDE iPTF16fnl
- The Physics of Accretion Discs, Winds And Jets in Tidal Disruption Events
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- On the impact of relativistic gravity on the rate of tidal disruption events
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- The gravitational wave background signal from tidal disruption events
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- eRASSt J074426.3+291606: prompt accretion disc formation in a 'faint and slow' tidal disruption event
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- Long-term X-ray evolution of SDSS J134244.4+053056.1: A more than 18 year-old, long-lived IMBH-TDE candidate
- Follow-up Observations of the Prolonged, super-Eddington, Tidal Disruption Event Candidate 3XMM~J150052.0+015452: the Slow Decline Continues
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- An Arena for Multi-Messenger Astrophysics: Inspiral and Tidal Disruption of White Dwarfs by Massive Black Holes
- An Analytic, Fully Relativistic Framework for Tidal Disruption Event Streams in Schwarzschild Geometry
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- A Tidal Disruption Event from an Intermediate-mass Black Hole Revealed by Comprehensive Multi-wavelength Observations
- On the origin of late-time X-ray flares in UV/optically-selected tidal disruption events