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On the Maximum Mass of Differentially Rotating Neutron Stars

The Astrophysical JournalPublished 1 January 2000Open access
Thomas W. Baumgarte, Stuart L. Shapiro, Masaru Shibata
Citations347
SJR quartileQ1
SJR score2.04
SNIP1.25
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TL;DR

The results suggest that the remnant of binary neutron star coalescence may be temporarily stabilized by differential rotation, leading to delayed collapse and a delayed gravitational wave burst.

Abstract

We construct relativistic equilibrium models of differentially rotating neutron stars and show that they can support significantly more mass than their nonrotating or uniformly rotating counterparts. We dynamically evolve such "hypermassive" models in full general relativity and show that there do exist configurations that are dynamically stable against radial collapse and bar formation. Our results suggest that the remnant of binary neutron star coalescence may be temporarily stabilized by differential rotation, leading to delayed collapse and a delayed gravitational wave burst.

Keywords

Physics and Astronomy