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Overcoming detection loss and noise in squeezing-based optical sensing

Physics

Overcoming detection loss and noise in squeezing-based optical sensing

G. Frascella, S. Agne, et al.

This groundbreaking research by Gaetano Frascella, Sascha Agne, Farid Ya. Khalili, and Maria V. Chekhova unveils a cutting-edge technique for enhancing optical sensor sensitivity through noiseless amplification, even in challenging conditions of detection efficiency and noise. Discover how this innovative approach paves the way for improved optical sensing applications.... show more
Abstract
Among the known resources of quantum metrology, one of the most practical and efficient is squeezing. Squeezed states of atoms and light improve the sensing of the phase, magnetic field, polarization, mechanical displacement. They promise to considerably increase signal-to-noise ratio in imaging and spectroscopy, and are already used in real-life gravitational-wave detectors. But despite being more robust than other states, they are still very fragile, which narrows the scope of their application. In particular, squeezed states are useless in measurements where the detection is inefficient or the noise is high. Here, we experimentally demonstrate a remedy against loss and noise: strong noiseless amplification before detection. This way, we achieve loss-tolerant operation of an interferometer fed with squeezed and coherent light. With only 50% detection efficiency and with noise exceeding the level of squeezed light more than 50 times, we overcome the shot-noise limit by 6 dB. Sub-shot-noise phase sensitivity survives up to 87% loss. Application of this technique to other types of optical sensing and imaging promises a full use of quantum resources in these fields.
Publisher
npj Quantum Information
Published On
May 12, 2021
Authors
Gaetano Frascella, Sascha Agne, Farid Ya. Khalili, Maria V. Chekhova
Tags
squeezed states of light
optical sensors
noiseless amplification
sub-shot-noise sensitivity
detection efficiency
optical sensing modalities
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