In continuously monitored systems the standard quantum limit is given by the trade-off between shot noise and back-action noise. In gravitational-wave detectors, such as Advanced LIGO, both contributions can be simultaneously squeezed in a broad frequency band by injecting a spectrum of squeezed vacuum states with a frequency-dependent squeeze angle. This approach requires setting up an additional long baseline, low-loss filter cavity in a vacuum system at the detector's site. Here, we show that the need for such a filter cavity can be eliminated, by exploiting Einstein-Podolsky-Rosen (EPR)-entangled signals and idler beams. By harnessing their mutual quantum correlations and the difference in the way each beam propagates in the interferome...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
Broadband quantum noise reduction can be achieved in gravitational-wave detectors by injecting frequ...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
The sensitivity of gravitational wave interferometric detectors is ultimately limited by the quantum...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interfer...
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 ...
The recent series of gravitational-wave detections by the Advanced LIGO and Advanced Virgo observato...
Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interfer...
Quantum noise-limited displacement sensors such as gravitational wave detectors can be improved by u...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
Broadband quantum noise reduction can be achieved in gravitational-wave detectors by injecting frequ...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
The sensitivity of gravitational wave interferometric detectors is ultimately limited by the quantum...
International audienceThe sensitivity of gravitational wave interferometric detectors is ultimately ...
Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interfer...
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 ...
The recent series of gravitational-wave detections by the Advanced LIGO and Advanced Virgo observato...
Squeezed states of light contribute to the reduction of quantum noise in gravitational-wave interfer...
Quantum noise-limited displacement sensors such as gravitational wave detectors can be improved by u...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...
Broadband quantum noise reduction can be achieved in gravitational-wave detectors by injecting frequ...
International audienceFuture gravitational-wave detectors will use frequency-dependent squeezed vacu...