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非理想零差可见度对多空间模式双模压缩测量的影响。

Effect of imperfect homodyne visibility on multi-spatial-mode two-mode squeezing measurements.

作者信息

Gupta Prasoon, Speirs Rory W, Jones Kevin M, Lett Paul D

出版信息

Opt Express. 2020 Jan 6;28(1):652-664. doi: 10.1364/OE.379033.

Abstract

We study the effect of homodyne detector visibility on the measurement of quadrature squeezing for a spatially multi-mode source of two-mode squeezed light. Sources like optical parametric oscillators (OPO) typically produce squeezing in a single spatial mode because the nonlinear medium is within a mode-selective optical cavity. For such a source, imperfect interference visibility in the homodyne detector couples in additional vacuum noise, which can be accounted for by introducing an equivalent loss term. In a free-space multi-spatial-mode system imperfect homodyne detector visibility can couple in uncorrelated squeezed modes, and hence can cause faster degradation of the measured squeezing. We show experimentally the dependence of the measured squeezing level on the visibility of homodyne detectors used to probe two-mode squeezed states produced by a free space four-wave mixing process in Rb vapor, and also demonstrate that a simple theoretical model agrees closely with the experimental data.

摘要

我们研究了零差探测器可见度对空间多模双模压缩光源正交压缩测量的影响。像光学参量振荡器(OPO)这样的光源通常在单个空间模式中产生压缩,因为非线性介质位于模式选择光学腔内。对于这样的光源,零差探测器中不完善的干涉可见度会引入额外的真空噪声,这可以通过引入等效损耗项来解释。在自由空间多空间模式系统中,不完善的零差探测器可见度会引入不相关的压缩模式,因此会导致测量的压缩更快地退化。我们通过实验展示了测量的压缩水平对用于探测铷蒸汽中自由空间四波混频过程产生的双模压缩态的零差探测器可见度的依赖性,并且还证明了一个简单的理论模型与实验数据非常吻合。

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