Squeezed states of light belong to the most prominent nonclassical resources. They have compelling applications in metrology, which has been demonstrated by their routine exploitation for improving the sensitivity of a gravitational-wave detector since 2010. Here, we report on the direct measurement of 15 dB squeezed vacuum states of light and their application to calibrate the quantum efficiency of photoelectric detection. The object of calibration is a customized InGaAs positive intrinsic negative (p-i-n) photodiode optimized for high external quantum efficiency. The calibration yields a value of 99.5% with a 0.5% (k=2) uncertainty for a photon flux of the order 1017 s−1 at a wavelength of 1064 nm. The calibration neither requires any st...
Squeezed states of light have been recently used to improve the sensitivity of laser interferometric...
Quantum noise will be the dominant noise source for the advanced laser interferometric gravitational...
The field of squeezed states for gravitational-wave (GW) detector enhancement is rapidly maturing. ...
Non-classical squeezed states of light are becoming increasingly important to a range of metrology a...
The engineering of strongly squeezed vacuum states of light is a key technology for the reduction of...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
Among the known resources of quantum metrology, one of the most practical and efficient is squeezing...
The level of quantum noise in measurements is bounded from below by the Heisenberg uncertainty princ...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Squeezed light—light with...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
The fundamental quantum interferometry bound limits the sensitivity of an interferometer for a given...
doi:10.1088/1367-2630/9/10/371 Abstract. We report the experimental realization of squeezed quantum ...
This contribution reviews our recent progress on the generation of squeezed light [1], and also the ...
A principal motivation for the investigation of squeezed states of light has been the potential that...
Squeezed states of light have been recently used to improve the sensitivity of laser interferometric...
Quantum noise will be the dominant noise source for the advanced laser interferometric gravitational...
The field of squeezed states for gravitational-wave (GW) detector enhancement is rapidly maturing. ...
Non-classical squeezed states of light are becoming increasingly important to a range of metrology a...
The engineering of strongly squeezed vacuum states of light is a key technology for the reduction of...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
Among the known resources of quantum metrology, one of the most practical and efficient is squeezing...
The level of quantum noise in measurements is bounded from below by the Heisenberg uncertainty princ...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Squeezed light—light with...
The ability to directly detect gravitational waves will open a completely new branch of astronomy to...
The fundamental quantum interferometry bound limits the sensitivity of an interferometer for a given...
doi:10.1088/1367-2630/9/10/371 Abstract. We report the experimental realization of squeezed quantum ...
This contribution reviews our recent progress on the generation of squeezed light [1], and also the ...
A principal motivation for the investigation of squeezed states of light has been the potential that...
Squeezed states of light have been recently used to improve the sensitivity of laser interferometric...
Quantum noise will be the dominant noise source for the advanced laser interferometric gravitational...
The field of squeezed states for gravitational-wave (GW) detector enhancement is rapidly maturing. ...