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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Modulating quantum fluctuations of scattered light in disordered media via wavefront shaping
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Modulating quantum fluctuations of scattered light in disordered media via wavefront shaping

机译:通过波前塑形调节无序介质中散射光的量子波动

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摘要

After multiple scattering of quadrature-squeezed light in a disordered medium, the quadrature amplitudes of the scattered modes present excess noise above the shot-noise level [Opt. Express 14, 6919 (2006)]. Anatural question is raised as to 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 averaged 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 averaged quantum fluctuation can always be reduced, even below the shot-noise level. These results may have potential applications in quantum information processing, e.g., sub-wavelength imaging using the scattering superlens with squeezed-state sources. (C) 2019 Optical Society of America
机译:在无序介质中挤出正交挤出的光进行多次散射之后,散射模式的正交振幅存在于射击噪声水平上方的过量噪声[OPT。 快递14,6919(2006)]。 提出了视域问题,以及是否存在抑制输出模式的正交波动的方法。 答案是肯定的。 在这项工作中,我们证明了波前塑形是一种有希望的方法,以减少散射模式的正交振幅的平均量子噪声。 这种减少由于量子噪声的破坏性干扰。 具体地,当单模挤压状态被认为是输入时,即使低于射击噪声水平,也可以始终降低平均量子波动。 这些结果可以具有量子信息处理中的潜在应用,例如,使用具有挤压状态源的散射超级的子波长成像。 (c)2019年光学学会

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