Fate of the remnant in tidal stripping event: repeating and non-repeating
arXiv:2408.10925 · doi:10.3847/1538-4357/ad8b24
Abstract
Tidal disruption events (TDE) occur when a star ventures too close to a massive black hole. In a partial TDE (pTDE), the star only grazes the tidal radius, causing the outer envelope of the star to be stripped away while the stellar core survives. Previous research has shown that a star, once tidally stripped in a parabolic orbit, can acquire enough orbital energy for its remnant to become a high-velocity star potentially capable of escaping the galaxy. Conversely, some studies have reported that the remnant may lose orbital energy and undergo re-disruption, leading to a recurring pTDE. This study aims to uncover the physical mechanisms and determine the conditions that lead to these divergent outcomes. We find that the orbital energy change only depends on the impact factor and the stellar structure, and barely depends on the mass of the black hole or the exact mass or orbital eccentricity of the star. For a (or ) polytropic star, after a pTDE its remnant gains orbital energy when the impact factor (or ) or loses energy vice versa. Additionally, we verify an analytical equation for orbital energy change that is applicable across various systems. Through hydrodynamic simulations, we also explore the structure of the stellar remnant post-tidal stripping. Our findings provide critical insights for interpreting observed pTDEs and advancing knowledge on the orbital evolution and event rate of these events.
20 pages, 16 figures, 2 tables, accepted by ApJ
References in corpus (27)
- Tidal Disruption Events
- X-ray Quasi-Periodic Eruptions from two previously quiescent galaxies
- 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
- Quasi-periodic eruptions from mildly eccentric unstable mass transfer in galactic nuclei
- Quasi--Periodic Eruptions from Galaxy Nuclei
- Live to die another day: the rebrightening of AT2018fyk as a repeating partial tidal disruption event
- A population of dust-enshrouded objects orbiting the Galactic black hole
- Deciphering the extreme X-ray variability of the nuclear transient eRASSt J045650.3-203750: A likely repeating partial tidal disruption event
- Quasi-periodic Eruptions from Helium Envelope of Hydrogen-deficient Stars Stripped by Supermassive Black Holes
- Tidal disruption events: the role of stellar spin
- Relativistic effects on tidal disruption kicks of solitary stars
- Ultraluminous X-ray bursts in two ultracompact companions to nearby elliptical galaxies
- A model for the possible connection between tidal disruption event and quasi-periodic eruption in GSN 069
- The rebrightening of a ROSAT-selected tidal disruption event: repeated weak partial disruption flares from a quiescent galaxy?
- Period Evolution of Repeating Transients in Galactic Nuclei
- The Rapid X-ray and UV Evolution of ASASSN-14ko
- The unluckiest star: A spectroscopically confirmed repeated partial tidal disruption event AT 2022dbl
- Tidal Stripping of a White Dwarf by an Intermediate-Mass Black Hole
- Chandra, HST/STIS, NICER, Swift, and TESS Detail the Flare Evolution of the Repeating Nuclear Transient ASASSN-14ko
- Rapid evolution of the recurrence time in the repeating partial tidal disruption event eRASSt J045650.3-203750
- Tidal disruption events from eccentric orbits and lessons learned from the noteworthy ASASSN-14ko
- Partial Tidal Disruption of Main-Sequence Stars by Intermediate-Mass Black Holes
- Light Curves of Partial Tidal Disruption Events
- Partial stellar tidal disruption events and their rates
- Repeating partial disruptions and two-body relaxation
- A new X-ray tidal disruption event candidate with fast variability