Disk Winds as an Explanation for Slowly Evolving Temperatures in Tidal Disruption Events
arXiv:1502.03284 · doi:10.1088/0004-637X/805/1/83
Abstract
Among the many intriguing aspects of optically discovered tidal disruption events (TDEs) is that their temperatures are lower than expected and that the temperature does not evolve as rapidly with decreasing fallback rate as would be expected in standard disk theory. We show that this can be explained qualitatively using an idea proposed by Laor & Davis in the context of normal active galactic nuclei: that larger accretion rates imply stronger winds and thus that the accretion rate through the inner disk only depends weakly on the inflow rate at the outer edge of the disk. We also show that reasonable quantitative agreement with data requires that, as has been suggested in recent papers, the circularization radius of the tidal stream is approximately equal to the semimajor axis of the most bound orbit of the debris rather than twice the pericenter distance as would be expected without rapid angular momentum redistribution. If this explanation is correct, it suggests that the evolution of TDEs may test both non-standard disk theory and the details of the interactions of the tidal stream.
19 pages, 5 figures, accepted by The Astrophysical Journal
References in corpus (11)
- An ultraviolet-optical flare from the tidal disruption of a helium-rich stellar core
- A Continuum of H- to He-Rich Tidal Disruption Candidates With a Preference for E+A Galaxies
- 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
- UV/Optical Detections of Candidate Tidal Disruption Events by GALEX and CFHTLS
- Evolution of tidal disruption candidates discovered by XMM-Newton
- A Tidal Disruption Flare in Abell 1689 from an Archival X-ray Survey of Galaxy Clusters
- A Luminous, Fast Rising UV-Transient Discovered by ROTSE: a Tidal Disruption Event?
- A candidate tidal disruption event in the Galaxy cluster Abell 3571
- Tidal disruption of a star in the Schwarzschild spacetime: relativistic effects in the return rate of debris
- "Circularization" vs. Accretion -- What Powers Tidal Disruption Events?
Cited by in corpus (8)
- Black hole masses of tidal disruption event host galaxies
- X-ray Brightening and UV Fading of Tidal Disruption Event ASASSN-15oi
- Black hole masses of tidal disruption event host galaxies II
- Ultrafast Outflow in Tidal Disruption Event ASASSN-14li
- Long-term stream evolution in tidal disruption events
- Discovery of Highly Blueshifted Broad Balmer and Metastable Helium Absorption Lines in a Tidal Disruption Event
- Mid-infrared flare of TDE candidate PS16dtm: dust echo and implications for the spectral evolution
- On the formation of a quasi-stationary twisted disc after a tidal disruption event