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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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Journal ArticleDOI

Kilohertz gravitational waves from binary neutron star remnants: Time-domain model and constraints on extreme matter

TL;DR: In this article, an analytical time-domain waveform model for postmerger signals informed by numerical relativity simulations was developed for quasicircular nonspinning binaries in the kilohertz regime.
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How Many Kilonovae Can Be Found in Past, Present, and Future Survey Data Sets?

Daniel Scolnic, +92 more
TL;DR: In this article, a spectral time-series model based on the DES-GW multi-band light curve from the single known kilonova (KN) event was constructed, and an average of BNS rates from past studies of 10^3 Gpc^(-3) yr^(-1), consistent with the one event found so far was provided.
Journal ArticleDOI

GROWTH on S190814bv: Deep Synoptic Limits on the Optical/Near-infrared Counterpart to a Neutron Star–Black Hole Merger

Igor Andreoni, +59 more
TL;DR: In this paper, the authors used a photometric redshift catalog and radiative transfer simulations of NSBH mergers to constrain the ejecta mass of S190814bv to be $M_\mathrm{ej} < 0.04$~$M_{\odot}$ at polar viewing angles, or if the opacity is $\kappa < 2$~cm$^2$g$^{-1}$.
Journal ArticleDOI

What Powered the Optical Transient AT2017gfo Associated with GW170817

TL;DR: In this paper, the authors consider energy injection from two types of the merger products: (1) a postmerger black hole powered by fallback accretion; and (2) a long-lived NS remnant.
Journal ArticleDOI

TDHF Theory and Its Extensions for the Multinucleon Transfer Reaction: A Mini Review

TL;DR: In this paper, recent advances in nuclear dynamics studies with Hartree-Fock (TDHF) and its extensions are briefly reviewed, along the line with the study of multinucleon transfer (MNT) processes in low-energy heavy-ion reactions.
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Planck 2015 results. XIII. Cosmological parameters

Peter A. R. Ade, +260 more
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Observation of Gravitational Waves from a Binary Black Hole Merger

B. P. Abbott, +1011 more
TL;DR: This is the first direct detection of gravitational waves and the first observation of a binary black hole merger, and these observations demonstrate the existence of binary stellar-mass black hole systems.
Journal Article

The Observation of Gravitational Waves from a Binary Black Hole Merger

TL;DR: The first direct detection of gravitational waves and the first observation of a binary black hole merger were reported in this paper, with a false alarm rate estimated to be less than 1 event per 203,000 years, equivalent to a significance greater than 5.1σ.
Journal ArticleDOI

GW151226: observation of gravitational waves from a 22-solar-mass binary black hole coalescence

B. P. Abbott, +973 more
TL;DR: This second gravitational-wave observation provides improved constraints on stellar populations and on deviations from general relativity.
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