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GW170814: A three-detector observation of gravitational waves from a binary black hole coalescence

B. P. Abbott, +1116 more
- 06 Oct 2017 - 
- Vol. 119, Iss: 14, pp 141101-141101
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TLDR
For the first time, the nature of gravitational-wave polarizations from the antenna response of the LIGO-Virgo network is tested, thus enabling a new class of phenomenological tests of gravity.
Abstract
On August 14, 2017 at 10∶30:43 UTC, the Advanced Virgo detector and the two Advanced LIGO detectors coherently observed a transient gravitational-wave signal produced by the coalescence of two stellar mass black holes, with a false-alarm rate of ≲1 in 27 000 years. The signal was observed with a three-detector network matched-filter signal-to-noise ratio of 18. The inferred masses of the initial black holes are 30.5-3.0+5.7M⊙ and 25.3-4.2+2.8M⊙ (at the 90% credible level). The luminosity distance of the source is 540-210+130  Mpc, corresponding to a redshift of z=0.11-0.04+0.03. A network of three detectors improves the sky localization of the source, reducing the area of the 90% credible region from 1160   deg2 using only the two LIGO detectors to 60  deg2 using all three detectors. For the first time, we can test the nature of gravitational-wave polarizations from the antenna response of the LIGO-Virgo network, thus enabling a new class of phenomenological tests of gravity.

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Journal ArticleDOI

Mass and spin of a Kerr black hole in modified gravity and a test of the Kerr black hole hypothesis

TL;DR: In this paper, the Arnowitt-Deser-Misner (ADM) mass, the angular momentum, and the charge of the Kerr black hole solution in the scalar-tensor-vector gravity theory were derived.
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Primordial gravitational waves in Horndeski gravity

TL;DR: In this paper, a generalized transfer function quantifying the subhorizon evolution of gravitational wave modes after they enter the horizon is presented. And the theoretical prediction of the modified primordial gravitational wave spectral density with the aLIGO, Einstein telescope, LISA, gLISA and DECIGO sensitivity curves are compared.
Journal ArticleDOI

Propagation of gravitational waves in a cosmological background

TL;DR: In this article, the propagation of gravitational waves in a cosmological background was investigated and the spatial derivatives of the extrinsic curvature and the parity-violating terms were systematically introduced.
Journal ArticleDOI

Constraints from the time lag between gravitational waves and gamma rays: Implications of GW170817 and GRB 170817A

TL;DR: In this article, the authors show that the gravitational potential of the Milky Way provides a potential source of an anomalous time delay difference between the arrival of photons and GWs, and demonstrate that the nearly coincident detection of the GW and EM signals can yield strong limits on anomalous gravitational time delay, through updating the previous limits taking into account details of the galaxy's gravitational potential.
Journal ArticleDOI

Measuring the Star Formation Rate with Gravitational Waves from Binary Black Holes

TL;DR: In this paper, the authors show how detections of gravitational waves from inspiraling binary black holes made by proposed third-generation detectors can be used to measure the star formation rate (SFR) of massive stars with high precision up to redshifts of ~10.
References
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Planck 2015 results - XIII. Cosmological parameters

Peter A. R. Ade, +337 more
TL;DR: In this article, the authors present a cosmological analysis based on full-mission Planck observations of temperature and polarization anisotropies of the cosmic microwave background (CMB) radiation.
Journal ArticleDOI

Planck 2015 results. XIII. Cosmological parameters

Peter A. R. Ade, +260 more
TL;DR: In this paper, the authors present results based on full-mission Planck observations of temperature and polarization anisotropies of the CMB, which are consistent with the six-parameter inflationary LCDM cosmology.
Journal ArticleDOI

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 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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