Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interferometers. This result, predicted by Caves in 1981, has been demonstrated by the main gravitational-wave detectors. The injection of phase-squeezed light only decreases quantum shot noise fluctuations, improving the detector sensitivity in high-frequency band; the corresponding anti-squeezing, indeed, induces radiation pressure noise, increasing quantum noise in low-frequency band. This becomes important for near detector generation, where current low frequency noises, that cover the radiation pressure noise, will be reduced. To face this problem, the use of frequency dependent squeezing, obtained using a long external filter cavity, is planned...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interfer...
The sensitivity of gravitational wave interferometric detectors is ultimately limited by the quantum...
In continuously monitored systems the standard quantum limit is given by the trade-off between shot ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
Quantum noise-limited displacement sensors such as gravitational wave detectors can be improved by u...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interfer...
The sensitivity of gravitational wave interferometric detectors is ultimately limited by the quantum...
In continuously monitored systems the standard quantum limit is given by the trade-off between shot ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
Quantum noise-limited displacement sensors such as gravitational wave detectors can be improved by u...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceQuantum noise is limiting the sensitivity of ground based gravitational wave d...
International audienceThe current generation of gravitational wave laser interferometer detectors op...