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Open AccessJournal ArticleDOI

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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Citations
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Journal ArticleDOI

Spectral Cauchy-characteristic extraction of the gravitational wave news function

TL;DR: In this article, an improved spectral algorithm for Cauchy-characteristic extraction and characteristic evolution of gravitational waves in numerical relativity is presented, which improves spectral convergence both at the poles of the spherical-polar grid and at future null infinity, as well as increase the temporal resolution of the code.
Journal ArticleDOI

Minimal Theory of Bigravity: construction and cosmology

TL;DR: The minimal theory of big gravity (MTBG) as discussed by the authors is a theory of two interacting spin-2 fields that propagates only four local degrees of freedom instead of the usual seven ones and allows for the same homogeneous and isotropic cosmological solutions as in Hassan-Rosen bigravity (HRBG).
Journal ArticleDOI

Constraints on Primordial Black Hole Dark Matter from Galactic Center X-ray observations

TL;DR: In this paper, a robust Monte Carlo approach was used in conjunction with a radiatively inefficient primordial black hole accretion model with commonly accepted model parameters to investigate constraints on the PBH DM using NuSTAR Galactic center (GC) X-ray data.
Journal ArticleDOI

Scale-dependent slowly rotating black holes with flat horizon structure

TL;DR: In this paper, the authors study slowly rotating four-dimensional black holes with flat horizon structure in scale-dependent gravity and obtain the solution, and then study thermodynamic properties as well as the invariants of the theory.
References
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Journal ArticleDOI

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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