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- W2963860223 abstract "After multiple scattering of quadrature-squeezed lights in a disordered medium, the quadrature amplitudes of the scattered modes present an excess noise above the shot-noise level [Opt. Expr. 14, 6919 (2006)]. A natural question is raised whether there exists a method of suppressing the quadrature fluctuation of the output mode. The answer is affirmative. In this work, we prove that wavefront shaping is a promising method to reduce the quantum noise of quadrature amplitudes of the scattered modes. This reduction is owing to the destructive interference of quantum noise. Specifically, when the single-mode squeezed states are considered as inputs, the quantum fluctuation can always be reduced, even below the shot-noise level. These results may have potential applications in quantum information processing, for instance, sub-wavelength imaging using the scattering superlens with squeezed-state sources." @default.
- W2963860223 created "2019-07-30" @default.
- W2963860223 creator A5023689771 @default.
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- W2963860223 date "2019-11-11" @default.
- W2963860223 modified "2023-10-16" @default.
- W2963860223 title "Modulating quantum fluctuations of scattered light in disordered media via wavefront shaping" @default.
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- W2963860223 doi "https://doi.org/10.1364/josab.36.003290" @default.
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