Tidal disruptions by rotating black holes: effects of spin and impact parameter
arXiv:1903.09147 · doi:10.1093/mnras/stz1530
Abstract
We present the results of relativistic smoothed particle hydrodynamics simulations of tidal disruptions of stars by rotating supermassive black holes, for a wide range of impact parameters and black hole spins. For deep encounters, we find that: relativistic precession creates debris geometries impossible to obtain with the Newtonian equations; part of the fluid can be launched on plunging orbits, reducing the fallback rate and the mass of the resulting accretion disc; multiple squeezings and bounces at periapsis may generate distinctive X-ray signatures resulting from the associated shock breakout; disruptions can occur inside the marginally bound radius, if the angular momentum spread launches part of the debris on non-plunging orbits. Perhaps surprisingly, we also find relativistic effects important in partial disruptions, where the balance between self-gravity and tidal forces is so precarious that otherwise minor relativistic effects can have decisive consequences on the stellar fate. In between, where the star is fully disrupted but relativistic effects are mild, the difference resides in a gentler rise of the fallback rate, a later and smaller peak, and longer return times. However, relativistic precession always causes thicker debris streams, both in the bound part (speeding up circularization) and in the unbound part (accelerating and enhancing the production of separate transients). We discuss various properties of the disruption (compression at periapsis, shape and spread of the energy distribution) and potential observables (peak fallback rate, times of rise and decay, duration of super-Eddington fallback) as a function of the impact parameter and the black hole spin.
19 pages, 18 figures; published in MNRAS
References in corpus (15)
- The NumPy array: a structure for efficient numerical computation
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Stellar disruption by a supermassive black hole: is the light curve really proportional to ?
- General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
- The Superluminous Transient ASASSN-15lh as a Tidal Disruption Event from a Kerr Black Hole
- Astrophysical Smooth Particle Hydrodynamics
- Atypical Thermonuclear Supernovae from Tidally Crushed White Dwarfs
- Tidal disruption events: the role of stellar spin
- Relativistic effects on tidal disruption kicks of solitary stars
- Thawing the frozen-in approximation: implications for self-gravity in deeply plunging tidal disruption events
- Tidal disruption of a star in the Schwarzschild spacetime: relativistic effects in the return rate of debris
- Simulating Black Hole White Dwarf Encounters
- Ultra-Close Encounters of Stars With Massive Black Holes: Tidal Disruption Events With Prompt Hyperaccretion
- An Empirical Fitting Method for Type Ia Supernova Light Curves: A Case Study of SN 2011fe
- Tidal disruptions of rotating stars by a supermassive black hole
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