Stars Crushed by Black Holes. II. A Physical Model of Adiabatic Compression and Shock Formation in Tidal Disruption Events
arXiv:2111.12736 · doi:10.3847/1538-4357/ac3fb9
Abstract
We develop a Newtonian model of a deep tidal disruption event (TDE), for which the pericenter distance of the star, , is well within the tidal radius of the black hole, , i.e., when . We find that shocks form for , but they are weak (with Mach numbers ) for all , and that they reach the center of the star prior to the time of maximum adiabatic compression for . The maximum density and temperature reached during the TDE follow much shallower relations with than the previously predicted and scalings. Below , this shallower dependence occurs because the pressure gradient is dynamically significant before the pressure is comparable to the ram pressure of the freefalling gas, while above we find that shocks prematurely halt the compression and yield the scalings and . We find excellent agreement between our results and high-resolution simulations. Our results demonstrate that, in the Newtonian limit, the compression experienced by the star is completely independent of the mass of the black hole. We discuss our results in the context of existing (affine) models, polytropic vs.~non-polytropic stars, and general relativistic effects, which become important when the pericenter of the star nears the direct capture radius, at (2.7) for a solar-like star disrupted by a () supermassive black hole.
24 pages, 19 Figures, Submitted to ApJ August 10, 2021
References in corpus (18)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- An ultraviolet-optical flare from the tidal disruption of a helium-rich stellar core
- Tidal Disruption Events
- Cold gas stripping in satellite galaxies: from pairs to clusters
- Radio Properties of Tidal Disruption Events
- X-ray Brightening and UV Fading of Tidal Disruption Event ASASSN-15oi
- Candidate tidal disruption events from the XMM-Newton Slew Survey
- XMMSL1 J074008.2-853927: a tidal disruption event with thermal and non-thermal components
- Infrared Echoes of Optical Tidal Disruption Events: ~1% Dust Covering Factor or Less at sub-parsec Scale
- A Luminous, Fast Rising UV-Transient Discovered by ROTSE: a Tidal Disruption Event?
- Tidal disruptions by rotating black holes: effects of spin and impact parameter
- Radio observations of the tidal disruption event XMMSL1 J074085
- The Long Term Evolution of ASASSN-14li
- Discovery of Highly Blueshifted Broad Balmer and Metastable Helium Absorption Lines in a Tidal Disruption Event
- Shock waves in tidally compressed stars by massive black holes
- Fallback Rates from Partial Tidal Disruption Events
- Rapid late-time X-ray brightening of the tidal disruption event OGLE16aaa
- Stars Crushed by Black Holes. I. On the Energy Distribution of Stellar Debris in Tidal Disruption Events
Cited by in corpus (9)
- Cooling Envelope Model for Tidal Disruption Events
- Stellar Revival and Repeated Flares in Deeply Plunging Tidal Disruption Events
- Tidal Disruption Events through the Lens of the Cooling Envelope Model
- Extreme Accretion Events: TDEs and Changing-Look AGN
- The dynamics of debris streams from tidal disruption events: exact solutions, critical stream density, and hydrogen recombination
- Tidal disruption rate suppression by the event horizon of spinning black holes
- Stars Crushed by Black Holes. III. Mild Compression of Radiative Stars by Supermassive Black Holes
- Tidal disruption events with SPH-EXA: resolving the return of the stream
- Repeating X-ray bursts: Interaction between a neutron star and clumps partially disrupted from a planet