Tidal Disruptions of Main Sequence Stars -- I. Observable Quantities and their Dependence on Stellar and Black Hole Mass
arXiv:2001.03501 · doi:10.3847/1538-4357/abb3cf
Abstract
This paper introduces a series of papers presenting a quantitative theory for the tidal disruption of main sequence stars by supermassive black holes. Using fully general relativistic hydrodynamics simulations and MESA-model initial conditions, we explore the pericenter-dependence of tidal disruption properties for eight stellar masses () and six black hole masses (). We present here the results most relevant to observations. The effects of internal stellar structure and relativity decouple for both the disruption cross section and the characteristic energy width of the debris. Moreover, the full disruption cross section is almost independent of for . Independent of , relativistic effects increase the critical pericenter distance for full disruptions by up to a factor relative to the Newtonian prediction. The probability of a direct capture is also independent of ; at this probability is equal to that of a complete disruption. The width of the debris energy distribution can differ from the standard estimate by factors from 0.35 to 2, depending on and , implying a corresponding change in the characteristic mass-return timescale. The "frozen-in approximation" is inconsistent with , and mass-loss continues over a long span of time. We provide analytic forms, suitable for use in both event rate estimates and parameter inference, to describe all these trends. For partial disruptions, we find a nearly-universal relation between the star's angular momentum and the fraction of remaining. Within the "empty loss-cone" regime, partial disruptions must precede full disruptions. These partial disruptions can drastically affect the rate and appearance of subsequent total disruptions.
15 pages, 8 figures, accepted for publication in ApJ, Supersedes arXiv:1907.08205
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- Elliptical accretion disk as a model for tidal disruption events
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- Close Encounters of Tight Binary Stars with Stellar-mass Black Holes
- Repeating Partial Tidal Encounters of Sun-like Stars Leading to their Complete Disruption
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- The mass fallback rate of the debris in relativistic stellar tidal disruption events
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- Demographics of Tidal Disruption Events with L-Galaxies: I. Volumetric TDE rates and the abundance of Nuclear Star Clusters
- Evolution of eccentric stellar disks around supermassive black holes: the complex disk disruption dynamics and the milliparsec stars
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- The Impact of Shocks on the Vertical Structure of Eccentric Disks
- Three-dimensional simulations of the magnetorotational instability in eccentric disks
- Strong lensing of tidal disruption events: Detection rates in imaging surveys
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- Numerical-relativity simulation for tidal disruption of white dwarfs by a supermassive black hole
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- A Systematic Search for Active Galactic Nucleus Flares in ZTF Data Release 23
- Tidal Disruption Events by Compact Supermassive Black Hole Binaries
- Self-consistent Solutions of Evolving Nuclear Star Clusters with Two-Dimensional Monte-Carlo Dynamical Simulations
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- MUSE IFU observations of galaxies hosting Tidal Disruption Events
- Rates of Strongly Lensed Tidal Disruption Events
- Tidal disruptions of close white dwarf binaries by intermediate mass black holes
- Rate of Repeating Tidal Disruption Events with 5--19 years interval
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