The detection of gravitational waves from compact binary mergers by LIGO has opened the era of gravitational wave astronomy, revealing a previously hidden side of the cosmos. To maximize the reach of the existing LIGO observatory facilities, we have designed a new instrument able to detect gravitational waves at distances 5 times further away than possible with Advanced LIGO, or at greater than 100 times the event rate. Observations with this new instrument will make possible dramatic steps toward understanding the physics of the nearby Universe, as well as observing the Universe out to cosmological distances by the detection of binary black hole coalescences. This article presents the instrument design and a quantitative analysis of the an...
The Laser Interferometer Gravitational Wave Observatory (LIGO) consists of two widely separated 4 km...
Gravitational waves were discovered with the detection of binary black-hole mergers1 and they should...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
The detection of gravitational waves from compact binary mergers by LIGO has opened the era of gravi...
The detection of gravitational waves from compact binary mergers by LIGO has opened the era of gravi...
The second-generation of gravitational-wave detectors are just starting operation, and have already ...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
The goal of the Laser Interferometric Gravitational-Wave Observatory (LIGO) is to detect and study g...
Aims. The detection and measurement of gravitational-waves from coalescing neutron-star binary syste...
The detection of GW170817 (ref. 1) heralds the age of gravitational-wave multi-messenger astronomy, ...
The Laser Interferometer Gravitational Wave Observatory (LIGO) consists of two widely separated 4 km...
Gravitational waves were discovered with the detection of binary black-hole mergers1 and they should...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
The detection of gravitational waves from compact binary mergers by LIGO has opened the era of gravi...
The detection of gravitational waves from compact binary mergers by LIGO has opened the era of gravi...
The second-generation of gravitational-wave detectors are just starting operation, and have already ...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
The goal of the Laser Interferometric Gravitational-Wave Observatory (LIGO) is to detect and study g...
Aims. The detection and measurement of gravitational-waves from coalescing neutron-star binary syste...
The detection of GW170817 (ref. 1) heralds the age of gravitational-wave multi-messenger astronomy, ...
The Laser Interferometer Gravitational Wave Observatory (LIGO) consists of two widely separated 4 km...
Gravitational waves were discovered with the detection of binary black-hole mergers1 and they should...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...