Tidal capture of stars by supermassive black holes: implications for periodic nuclear transients and quasi-periodic eruptions
arXiv:2301.01300 · doi:10.1093/mnrasl/slad001
Abstract
Stars that plunge into the center of a galaxy are tidally perturbed by a supermassive black hole (SMBH), with closer encounters resulting in larger perturbations. Exciting these tides comes at the expense of the star's orbital energy, which leads to the naive conclusion that a smaller pericenter (i.e., a closer encounter between the star and SMBH) always yields a more tightly bound star to the SMBH. However, once the pericenter distance is small enough that the star is partially disrupted, morphological asymmetries in the mass lost by the star can yield an \emph{increase} in the orbital energy of the surviving core, resulting in its ejection -- not capture -- by the SMBH. Using smoothed-particle hydrodynamics simulations, we show that the combination of these two effects -- tidal excitation and asymmetric mass loss -- result in a maximum amount of energy lost through tides of of the binding energy of the star, which is significantly smaller than the theoretical maximum of the total stellar binding energy. This result implies that stars that are repeatedly partially disrupted by SMBHs many () times on short-period orbits ( few years), as has been invoked to explain the periodic nuclear transient ASASSN-14ko and quasi-periodic eruptions, must be bound to the SMBH through a mechanism other than tidal capture, such as a dynamical exchange (i.e., Hills capture).
4 pages, 2 figures, Accepted for publication in MNRAS
References in corpus (8)
- ASASSN-14ko is a Periodic Nuclear Transient in ESO 253-G003
- GSN 069 -- A Tidal Disruption Near-Miss
- Quasi--Periodic Eruptions from Galaxy Nuclei
- Tidal disruption events: the role of stellar spin
- Relativistic effects on tidal disruption kicks of solitary stars
- On the impact of relativistic gravity on the rate of tidal disruption events
- Stellar Revival and Repeated Flares in Deeply Plunging Tidal Disruption Events
- Using the Hills Mechanism to Generate Repeating Partial Tidal Disruption Events and ASASSN-14ko
Cited by in corpus (6)
- Period Evolution of Repeating Transients in Galactic Nuclei
- Rapid evolution of the recurrence time in the repeating partial tidal disruption event eRASSt J045650.3-203750
- Partial stellar tidal disruption events and their rates
- Alive but Barely Kicking: News from 3+ years of Swift and XMM-Newton X-ray Monitoring of Quasi-Periodic Eruptions from eRO-QPE1
- Repeating Nuclear Transients from Repeating Partial Tidal Disruption Events
- Tidal capture and repeating partial tidal disruption events of giant stars