The sensitivity of 2nd and 3rd generations of interferometric gravitational wave detectors will be limited by thermal noise of the test-mass mirrors and highly reflective coatings. Recently developed crystalline coatings show a promising thermal noise reduction compared to presently used amorphous coatings. However, stringent requirements apply to the optical properties of the coatings as well. We have mapped the optical absorption of a crystalline AlGaAs coating which is optimized for high reflectivity for a wavelength of 1064nm. The absorption was measured at 1550nm where the coating stack transmits approximately 70% of the laser light. The measured absorption was lower than (30.2 +/- 11.1)ppm which is equivalent to (3.6 +/- 1.3)ppm for a...
A key element for the next-generation gravitational wave interferometers are optical substrates char...
The sensitivity of future gravitational wave (GW) observatories will be limited by thermal noise in ...
Future gravitational wave detectors (GWDs) such as Advanced LIGO upgrades and the Einstein Telescope...
The sensitivity of second and third generations of interferometric gravitational wave (GW) detectors...
The sensitivity of second and third generations of interferometric gravitational wave (GW) detectors...
Thermal noise associated with the dielectric optical coatings used to form the mirrors of interferom...
In this Perspective, we summarize the status of technological development for large-area and low-noi...
Gravitational waves are a prediction of Einstein's General Theory of Relativity. Astrophysical event...
Thermal noise in the highly reflective mirror coatings is one of the main limitations to the sensiti...
Gravitational waves are detected by measuring length changes between mirrors in the arms of kilomet...
Future gravitational wave detectors (GWDs) such as Advanced LIGO upgrades and the Einstein Telescope...
The most sensitive measurements of time and space are made with resonant optical cavities, and these...
The announcement of the direct detection of gravitational waves (GW) by the LIGO and Virgo collabora...
Planned cryogenic gravitational-wave detectors will require improved coatings with a strain thermal ...
Brownian thermal noise associated with highly reflective mirror coatings is a fundamental limit for ...
A key element for the next-generation gravitational wave interferometers are optical substrates char...
The sensitivity of future gravitational wave (GW) observatories will be limited by thermal noise in ...
Future gravitational wave detectors (GWDs) such as Advanced LIGO upgrades and the Einstein Telescope...
The sensitivity of second and third generations of interferometric gravitational wave (GW) detectors...
The sensitivity of second and third generations of interferometric gravitational wave (GW) detectors...
Thermal noise associated with the dielectric optical coatings used to form the mirrors of interferom...
In this Perspective, we summarize the status of technological development for large-area and low-noi...
Gravitational waves are a prediction of Einstein's General Theory of Relativity. Astrophysical event...
Thermal noise in the highly reflective mirror coatings is one of the main limitations to the sensiti...
Gravitational waves are detected by measuring length changes between mirrors in the arms of kilomet...
Future gravitational wave detectors (GWDs) such as Advanced LIGO upgrades and the Einstein Telescope...
The most sensitive measurements of time and space are made with resonant optical cavities, and these...
The announcement of the direct detection of gravitational waves (GW) by the LIGO and Virgo collabora...
Planned cryogenic gravitational-wave detectors will require improved coatings with a strain thermal ...
Brownian thermal noise associated with highly reflective mirror coatings is a fundamental limit for ...
A key element for the next-generation gravitational wave interferometers are optical substrates char...
The sensitivity of future gravitational wave (GW) observatories will be limited by thermal noise in ...
Future gravitational wave detectors (GWDs) such as Advanced LIGO upgrades and the Einstein Telescope...