论文标题

量子增强的光相估计,挤压热状态

Quantum enhanced optical phase estimation with a squeezed thermal state

论文作者

Yu, Juan, Qin, Yue, Qin, Jinliang, Wang, Hong, Yan, Zhihui, Jia, Xiaojun, Peng, Kunchi

论文摘要

量子相估计方案可以提供一种相移的测量方法,由于使用了非经典状态,因此精确度优于标准量子极限(SQL)。挤压真空状态的一个正交状态低于相应的SQL,已指出了量子相估计的敏感资源,并且估计精度直接受挤压状态的特性的影响。在这里,我们详细分析了挤压状态对量子相估计准确性的纯度和挤压水平的影响。评估了挤压热态可以达到的最大精度,并且实验结果与理论分析一致。还发现,超过SQL以外的相估计间隔$δθ$的宽度与挤压状态的纯度相关。

Quantum phase estimation protocols can provide a measuring method of phase shift with precision superior to standard quantum limit (SQL) due to the application of a nonclassical state of light. A squeezed vacuum state, whose variance in one quadrature is lower than the corresponding SQL, has been pointed out a sensitive resource for quantum phase estimation and the estimation accuracy is directly influenced by the properties of the squeezed state. Here we detailedly analyze the influence of the purity and squeezing level of the squeezed state on the accuracy of quantum phase estimation. The maximum precision that can be achieved for a squeezed thermal state is evaluated, and the experimental results are in agreement with the theoretical analyses. It is also found that the width of the phase estimation interval $Δθ$ beyond SQL is correlated with the purity of the squeezed state.

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