Relativistic tidal compressions of a star by a massive black hole
arXiv:0910.5362 · doi:10.1051/0004-6361/200913442
Abstract
Aims: We investigate the stellar pancake mechanism during which a solar-type star is tidally flattened within its orbital plane passing close to a 10^6 solar masses black hole. We simulate the relativistic orthogonal compression process and follow the associated shock waves formation. Methods: We consider a one-dimensional hydrodynamical stellar model moving in the relativistic gravitational field of a non-rotating black hole. The model is numerically solved using a Godunov-type shock-capturing source-splitting method in order to correctly reproduce the shock waves profiles. Results: Simulations confirm that the space-time curvature can induce several successive orthogonal compressions of the star which give rise to several strong shock waves. The shock waves finally escape from the star and repeatedly heat up the stellar surface to high energy values. Such a shock-heating could interestingly provide a direct observational signature of strongly disruptive star - black hole encounters through the emission of hard X or soft gamma-ray bursts. Timescales and energies of such a process are consistent with some observed events such as GRB 970815.
8 pages, 11 figures, submitted to Astron. Astrophys
References in corpus (6)
- UV/Optical Detections of Candidate Tidal Disruption Events by GALEX and CFHTLS
- Enhanced tidal disruption rates from massive black hole binaries
- Candidate tidal disruption events from the XMM-Newton Slew Survey
- A candidate tidal disruption event in the Galaxy cluster Abell 3571
- Shock waves in tidally compressed stars by massive black holes
- A tidal disruption model for the gamma-ray burst of GRB 060614
Cited by in corpus (18)
- Discovery of the Onset of Rapid Accretion by a Dormant Massive Black Hole
- Consequences of Strong Compression in Tidal Disruption Events
- Stellar Tidal Disruption Events in General Relativity
- Relativistic effects on tidal disruption kicks of solitary stars
- First light from tidal disruption events
- Tidal Disruptions of White Dwarfs: Theoretical Models and Observational Prospects
- The mass-metallicity relation of local active galaxies
- Probing Intermediate Mass Black Holes With Optical Emission Lines from Tidally Disrupted White Dwarfs
- The Process of Stellar Tidal Disruption by Supermassive Black Holes. The first pericenter passage
- The Definitive X-ray Light Curve of Swift J164449.3+573451
- Global Simulations of Tidal Disruption Event Disk Formation via Stream Injection in GRRMHD
- The nozzle shock in tidal disruption events
- Ultra-deep tidal disruption events: prompt self-intersections and observables
- Simulating extreme-mass-ratio systems in full general relativity
- Streams collision as possible precursor of double tidal disruption events
- Tidal effects in the motion of gas clouds around boson stars
- Jet Tilt Instability from Stream-Disk Interactions in MAD Disks
- Radiative Emission Mechanisms of Tidal Disruption Events