Rotational Instabilities and Centrifugal Hangup
Abstract
One interesting class of gravitational radiation sources includes rapidly rotating astrophysical objects that encounter dynamical instabilities. We have carried out a set of simulations of rotationally induced instabilities in differentially rotating polytropes. An =1.5 polytrope with the Maclaurin rotation law will encounter the =2 bar instability at . Our results indicate that the remnant of this instability is a persistent bar-like structure that emits a long-lived gravitational radiation signal. Furthermore, dynamical instability is shown to occur in =3.33 polytropes with the -constant rotation law at . In this case, the dominant mode of instability is =1. Such instability may allow a centrifugally-hung core to begin collapsing to neutron star densities on a dynamical timescale. If it occurs in a supermassive star, it may produce gravitational radiation detectable by LISA.
Keywords
Cite
@article{arxiv.gr-qc/0101071,
title = {Rotational Instabilities and Centrifugal Hangup},
author = {Kimberly C. B. New and Joan M. Centrella},
journal= {arXiv preprint arXiv:gr-qc/0101071},
year = {2009}
}
Comments
13 pages (includes 11 figures) and 1 separate jpeg figure; to appear in Astrophysical Sources of Gravitational Radiation, AIP conference proceedings, edited by Joan M. Centrella