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GW170817: observation of gravitational waves from a binary neutron star inspiral

B. P. Abbott, +1134 more
- 16 Oct 2017 - 
- Vol. 119, Iss: 16, pp 161101-161101
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TLDR
The association of GRB 170817A, detected by Fermi-GBM 1.7 s after the coalescence, corroborates the hypothesis of a neutron star merger and provides the first direct evidence of a link between these mergers and short γ-ray bursts.
Abstract
On August 17, 2017 at 12∶41:04 UTC the Advanced LIGO and Advanced Virgo gravitational-wave detectors made their first observation of a binary neutron star inspiral. The signal, GW170817, was detected with a combined signal-to-noise ratio of 32.4 and a false-alarm-rate estimate of less than one per 8.0×10^{4}  years. We infer the component masses of the binary to be between 0.86 and 2.26  M_{⊙}, in agreement with masses of known neutron stars. Restricting the component spins to the range inferred in binary neutron stars, we find the component masses to be in the range 1.17-1.60  M_{⊙}, with the total mass of the system 2.74_{-0.01}^{+0.04}M_{⊙}. The source was localized within a sky region of 28  deg^{2} (90% probability) and had a luminosity distance of 40_{-14}^{+8}  Mpc, the closest and most precisely localized gravitational-wave signal yet. The association with the γ-ray burst GRB 170817A, detected by Fermi-GBM 1.7 s after the coalescence, corroborates the hypothesis of a neutron star merger and provides the first direct evidence of a link between these mergers and short γ-ray bursts. Subsequent identification of transient counterparts across the electromagnetic spectrum in the same location further supports the interpretation of this event as a neutron star merger. This unprecedented joint gravitational and electromagnetic observation provides insight into astrophysics, dense matter, gravitation, and cosmology.

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References
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Journal ArticleDOI

Can we measure individual black-hole spins from gravitational-wave observations?

TL;DR: In this article, the authors investigate the ability to measure individual spins for non-precessing binary, for a range of configurations and signal strengths, and conclude that in general the spin of the larger black hole will be measurable (at best) with observations from Advanced LIGO and Virgo.
Journal ArticleDOI

Quasiuniversal properties of neutron star mergers

TL;DR: In this article, the mass-rescaled gravitational wave frequency and the binding energy at the moment of merger and certain dimensionless binary tidal coupling constants depending on the stars' Love numbers, compactness, and the binary mass ratio were modeled using the effective-one-body model.
Journal ArticleDOI

The spin parameter of uniformly rotating compact stars

TL;DR: In this article, the authors studied the dimensionless spin parameters of uniformly rotating neutron stars and quark stars in general relativity and showed that the maximum value of the spin parameter of a neutron star rotating at the Keplerian frequency is j max ~ 0.7 for a wide class of realistic equations of state.
BookDOI

General Relativity and Gravitation: A Centennial Perspective

TL;DR: In this paper, the authors discuss the initial value problem of general relativity and its implications, as well as the global behavior of solutions to Einstein's equations, and their implications on quantum gravity via unification.
Journal ArticleDOI

Love number can be hard to measure

TL;DR: In this paper, it was shown that not including point-particle terms at 4PN order to leading-and first-order in the mass ratio in the template model can severely deteriorate our ability to measure the equation of state.
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