No snow-plough mechanism during the rapid hardening of supermassive black hole binaries

Astronomy and Astrophysics – Astrophysics – Cosmology and Extragalactic Astrophysics

Scientific paper

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

5 pages, 5 figures, accepted for publication in MNRAS

Scientific paper

We present two-dimensional hydrodynamical simulations of the tidal interaction between a supermassive black hole binary with moderate mass ratio, and the fossil gas disc where it is embedded. Our study extends previous one-dimensional height-integrated disc models, which predicted that the density of the gas disc between the primary and the secondary black holes should rise significantly during the ultimate stages of the binary's hardening driven by the gravitational radiation torque. This snow-plough mechanism, as we call it, would lead to an increase in the bolometric luminosity of the system prior to the binary merger, which could be detected in conjunction with the gravitational wave signal. We argue here that the snow-plough mechanism is unlikely to occur. In two-dimensions, when the binary's hardening timescale driven by gravitational radiation becomes shorter than the disc's viscous drift timescale, fluid elements in the inner disc get funneled to the outer disc through horseshoe trajectories with respect to the secondary. Mass leakage across the secondary's gap is thus found to be effective and, as a result, the predicted accretion disc luminosity will remain at roughly the same level prior to merger.

No associations

LandOfFree

Say what you really think

Search LandOfFree.com for scientists and scientific papers. Rate them and share your experience with other people.

Rating

No snow-plough mechanism during the rapid hardening of supermassive black hole binaries does not yet have a rating. At this time, there are no reviews or comments for this scientific paper.

If you have personal experience with No snow-plough mechanism during the rapid hardening of supermassive black hole binaries, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and No snow-plough mechanism during the rapid hardening of supermassive black hole binaries will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFWR-SCP-O-212462

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.