Amplified Squeezed States: Analyzing Loss and Phase Noise

Fuente: arXiv
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Main Authors: Kwan, K. M., Yap, M. J., Qin, J., Gould, D. W., Adya, V. B., Chua, S. S. Y., Junker, J., McRae, T. G., Slagmolen, B. J. J., McClelland, D. E.
Format: Preprint
Published: 2024
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author Kwan, K. M.
Yap, M. J.
Qin, J.
Gould, D. W.
Adya, V. B.
Chua, S. S. Y.
Junker, J.
McRae, T. G.
Slagmolen, B. J. J.
McClelland, D. E.
author_facet Kwan, K. M.
Yap, M. J.
Qin, J.
Gould, D. W.
Adya, V. B.
Chua, S. S. Y.
Junker, J.
McRae, T. G.
Slagmolen, B. J. J.
McClelland, D. E.
contents Phase-sensitive amplification of squeezed states is a technique to mitigate high detection loss, e.g. at 2-micrometre wavelengths. Our analytical model of amplified squeezed states expands on the effect of phase noise and derives two practical parameters: the effective measurable squeezing and the effective detection efficiency. A case study including realistic parameters demonstrates the benefit of phase-sensitive amplification. We identified the phase noise in the optical parametric amplifier (OPA) minimally affects the squeezing level, enabling increased gain of the OPA. This scheme is compatible with proposed gravitational-wave detectors and consistent with applications in quantum systems that are degraded by output coupling loss in optical waveguides.
format Preprint
id arxiv_https___arxiv_org_abs_2401_04937
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Amplified Squeezed States: Analyzing Loss and Phase Noise
Kwan, K. M.
Yap, M. J.
Qin, J.
Gould, D. W.
Adya, V. B.
Chua, S. S. Y.
Junker, J.
McRae, T. G.
Slagmolen, B. J. J.
McClelland, D. E.
Quantum Physics
Phase-sensitive amplification of squeezed states is a technique to mitigate high detection loss, e.g. at 2-micrometre wavelengths. Our analytical model of amplified squeezed states expands on the effect of phase noise and derives two practical parameters: the effective measurable squeezing and the effective detection efficiency. A case study including realistic parameters demonstrates the benefit of phase-sensitive amplification. We identified the phase noise in the optical parametric amplifier (OPA) minimally affects the squeezing level, enabling increased gain of the OPA. This scheme is compatible with proposed gravitational-wave detectors and consistent with applications in quantum systems that are degraded by output coupling loss in optical waveguides.
title Amplified Squeezed States: Analyzing Loss and Phase Noise
topic Quantum Physics
url https://arxiv.org/abs/2401.04937