论文标题

直接测量高阶非线性极化挤压

Direct Measurement of Higher-Order Nonlinear Polarization Squeezing

论文作者

Prasannan, Nidhin, Sperling, Jan, Brecht, Benjamin, Silberhorn, Christine

论文摘要

我们通过利用偏振符号的光源和点击计数测量值来利用光线极化状态的非线性挤压效应。非线性Stokes操作员是通过将点击计数理论与Angular-Momentum型代数结合使用而获得的。为了量化量子效应,对于非线性Stokes操作员的二阶和高阶力矩得出了理论界限。通过使用频谱非相关的II类相匹配的波导在SAGNAC干涉仪内,可以通过开发有效的源来实现我们概念的实验验证。相关的点击统计数据和力矩是直接从八次bin准photon-number分辨检测系统获得的。宏观的铃铛状态很容易与我们的来源一起使用,这表明非线性极化在高达八阶相关性中的独特性质,与我们的理论预测相匹配。此外,我们的数据认证具有高统计意义的非经典相关性,而无需纠正实验缺陷和局限性。同样,我们的非线性挤压可以识别出噪声量子状态的非经典性,而噪声量子状态是无法检测到的已知线性极化式标准。

We report on nonlinear squeezing effects of polarization states of light by harnessing the intrinsic correlations from a polarization-entangled light source and click-counting measurements. Nonlinear Stokes operators are obtained from harnessing the click-counting theory in combination with angular-momentum-type algebras. To quantify quantum effects, theoretical bounds are derived for second- and higher-order moments of nonlinear Stokes operators. The experimental validation of our concept is rendered possible by developing an efficient source, using a spectrally decorrelated type-II phase-matched waveguide inside a Sagnac interferometer. Correlated click statistics and moments are directly obtained from an eight-time-bin quasi-photon-number-resolving detection system. Macroscopic Bell states that are readily available with our source show the distinct nature of nonlinear polarization squeezing in up to eighth-order correlations, matching our theoretical predictions. Furthermore, our data certify nonclassical correlations with high statistical significance, without the need to correct for experimental imperfections and limitations. Also, our nonlinear squeezing can identify nonclassicality of noisy quantum states which is undetectable with the known linear polarization-squeezing criterion.

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