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Non-classical correlation of two-mode squeezed light in asymmetric optical-loss conditions

机译:非对称光损条件下双模压缩光的非经典相关

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Quantum illumination is an attractive scheme for target detection utilizing quantum entanglement to improve error probability of discrimination for target presence or absence even in a lossy and noisy environment. In the quantum illumination with two-mode squeezed vacuum states, one of the entangled beams, a signal beam is transmitted towards a lossy optical medium. And the other beam, a reference beam is directly sent to receiver with a lossless channel. So, the entangled light beams are affected by the asymmetric optical loss. In this work we calculate the correlation variance of quadrature phase amplitudes of two-mode squeezed light under the asymmetric optical-loss conditions and discuss its non-classical correlation based on Duan's and Simon's inseparability criterion. The asymmetric optical loss sensitively increases the correlation variance and violates the inseparability criterion. In this work we consider asymmetric two-mode squeezed light as an initial state where the signal beam has larger quadrature phase amplitudes than the reference beam. After exposition to the asymmetric optical loss only the quadrature phase amplitudes of the signal beam is attenuated and become comparable to those of the reference beam. As a result it is expected that the asymmetric two-mode squeezed light has an ability to compensate the effect of the asymmetric optical loss and can maintain the inseparability criterion in the sense of Duan and Simon.
机译:量子照明是一种利用量子纠缠进行目标检测的诱人方案,即使在有损和嘈杂的环境中,该方法也可以提高判别目标存在与否的错误概率。在具有两个模态压缩真空状态的量子照明(纠缠光束之一)中,信号光束朝着有损耗的光学介质传输。而另一束,即参考束则直接通过无损信道发送到接收器。因此,纠缠的光束受到不对称光学损耗的影响。在这项工作中,我们计算了在非对称光损耗条件下双模压缩光的正交相位幅度的相关方差,并基于Duan和Simon的不可分性准则讨论了其非经典相关性。非对称光损耗敏感地增加了相关方差,并违反了不可分割性标准。在这项工作中,我们将非对称双模压缩光视为一种初始状态,其中信号光束的正交相位幅度大于参考光束的正交相位幅度。在暴露于非对称光学损耗之后,仅信号束的正交相位幅度被衰减并且变得与参考束的正交相位幅度相当。结果,期望不对称的双模压缩光具有补偿不对称的光损失的影响的能力,并且可以在Duan和Simon的意义上保持不可分割的标准。

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