English

Stellar Tidal Disruption Events in General Relativity

High Energy Astrophysical Phenomena 2019-02-20 v1 General Relativity and Quantum Cosmology

Abstract

A tidal disruption event (TDE) ensues when a star passes too close to the supermassive black hole (SMBH) in a galactic center and is ripped apart by the tidal field of the SMBH. The gaseous debris produced in a TDE can power a bright electromagnetic flare as it is accreted by the SMBH; so far, several dozen TDE candidates have been observed. For SMBHs with masses above 107M\sim 10^7 M_\odot, the tidal disruption of solar-type stars occurs within ten gravitational radii of the SMBH, implying that general relativity (GR) is needed to describe gravity. Three promising signatures of GR in TDEs are: (1) a super-exponential cutoff in the volumetric TDE rate for SMBH masses above 108M\sim 10^8 M_\odot due to direct capture of tidal debris by the event horizon, (2) delays in accretion disk formation (and a consequent alteration of the early-time light curve) caused by the effects of relativistic precession on stream circularization, and (3) quasi-periodic modulation of X-ray emission due to global precession of misaligned accretion disks and the jets they launch. We review theoretical models and simulations of TDEs in Newtonian gravity, then describe how relativistic modifications give rise to these proposed observational signatures, as well as more speculative effects of GR. We conclude with a brief summary of TDE observations and the extent to which they show indications of these predicted relativistic signatures.

Keywords

Cite

@article{arxiv.1801.10180,
  title  = {Stellar Tidal Disruption Events in General Relativity},
  author = {Nicholas C. Stone and Michael Kesden and Roseanne M. Cheng and Sjoert van Velzen},
  journal= {arXiv preprint arXiv:1801.10180},
  year   = {2019}
}

Comments

54 pages, 9 figures, review paper to appear in the General Relativity and Gravitation (GRG) Topical Collection "Testing the Kerr spacetime with gravitational-wave and electromagnetic observations" (Guest Editor: Emanuele Berti)

R2 v1 2026-06-23T00:04:44.299Z