2015ApJ...808..186L


Query : 2015ApJ...808..186L

2015ApJ...808..186L - Astrophys. J., 808, 186 (2015/August-1)

An upper bound on neutron star masses from models of short gamma-ray bursts.

LAWRENCE S., TERVALA J.G., BEDAQUE P.F. and MILLER M.C.

Abstract (from CDS):

The discovery of two neutron stars with gravitational masses has placed a strong lower limit on the maximum mass of nonrotating neutron stars, and with it a strong constraint on the properties of cold matter beyond nuclear density. Current upper mass limits are much looser. Here, we note that if most short gamma-ray bursts are produced by the coalescence of two neutron stars, and if the merger remnant collapses quickly, then the upper mass limit is constrained tightly. If the rotation of the merger remnant is limited only by mass-shedding (which seems probable based on numerical studies), then the maximum gravitational mass of a nonrotating neutron star is if the masses of neutron stars that coalesce to produce gamma-ray bursts are in the range seen in Galactic double neutron star systems. These limits would be increased by ∼4% in the probably unrealistic case that the remnants rotate at ∼30% below mass-shedding, and by ∼15% in the extreme case that the remnants do not rotate at all. Future coincident detection of short gamma-ray bursts with gravitational waves will strengthen these arguments because they will produce tight bounds on the masses of the components for individual events. If these limits are accurate, then a reasonable fraction of double neutron star mergers might not produce gamma-ray bursts. In that case, or in the case that many short bursts are produced instead by the mergers of neutron stars with black holes, the implied rate of gravitational wave detections will be increased.

Abstract Copyright:

Journal keyword(s): dense matter - equation of state - gamma-ray burst: general - gravitational waves - stars: neutron

Simbad objects: 5

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Number of rows : 5
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 PSR J0348+0432 Psr 03 48 43.6363173480 +04 32 11.461921260           ~ 271 2
2 PSR J0737-3039A Psr 07 37 51.24720 -30 39 40.6700           ~ 283 1
3 PSR B1534+11 Psr 15 37 09.9603 +11 55 55.554           ~ 433 1
4 PSR J1614-2230 Psr 16 14 36.5070 -22 30 31.207           ~ 400 1
5 PSR J1915+1606 Psr 19 15 27.99999 +16 06 27.4034     22.5     ~ 995 1

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