Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sensitivity of all the gravitational wave observatories at frequencies above one kilohertz. We report a successful application of squeezed vacuum states of light at the GEO\,600 observatory and demonstrate for the first time a reduction of quantum noise up to $6.03 \pm 0.02$ dB in a kilometer-scale interferometer. This is equivalent at high frequencies to increasing the laser power circulating in the interferometer by a factor of four. Achieving this milestone, a key goal for the upgrades of the advanced detectors, required a better understanding of the noise sources and losses, and implementation of robust control schemes to mitigate their cont...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
A fundamental noise source limiting the measurement sensitivity of interferometric gravitational wav...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
This contribution reviews our recent progress on the generation of squeezed light [1], and also the ...
The quantum noise of the light field is a fundamental noise source in interferometric gravitational-...
Quantum noise will be the dominant noise source for the advanced laser interferometric gravitational...
The first detections of gravitational waves have opened an exciting new field of astronomy. One of t...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
A fundamental noise source limiting the measurement sensitivity of interferometric gravitational wav...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
Photon shot noise, arising from the quantum-mechanical nature of the light, currently limits the sen...
This contribution reviews our recent progress on the generation of squeezed light [1], and also the ...
The quantum noise of the light field is a fundamental noise source in interferometric gravitational-...
Quantum noise will be the dominant noise source for the advanced laser interferometric gravitational...
The first detections of gravitational waves have opened an exciting new field of astronomy. One of t...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
International audienceThe current generation of gravitational wave laser interferometer detectors op...
A fundamental noise source limiting the measurement sensitivity of interferometric gravitational wav...