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Nonlinear phase estimation: Parity measurement approaches the quantum Cramér-Rao bound for coherent states

机译:非线性相位估计:奇偶校验测量方法接近QuantumCramér-Rao for Chereent状态

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Quantum-enhanced phase estimation paves the way for precision measurements and is of great realistic significance. In this paper we theoretically investigate the second-order nonlinear phase estimation using a coherent state and parity measurement. A numerical expression of the parity signal is derived, and its visibility is analyzed. The resolution and sensitivity of the signal are compared to a linear phase estimation protocol with the same input and measurement. Additionally, by using the phase-averaging approach, we make an attempt at unveiling the lowdown on a conclusive sensitivity limit without external phase reference. Finally, the effects of several realistic scenarios on the resolution and sensitivity are studied, including photon loss, imperfect detector, those which are a combination thereof, and unbalanced beam splitter.
机译:量子增强的相位估计为精确度测量铺平了道路,具有巨大的现实意义。 在本文中,我们理论上使用相干状态和奇偶校验测量来研究二阶非线性相位估计。 衍生奇偶校验信号的数值表达,分析了其可视性。 将信号的分辨率和灵敏度与具有相同输入和测量的线性相位估计协议进行比较。 另外,通过使用相位平均方法,我们尝试在没有外部相位参考的情况下揭示结论性敏感性限制的低调。 最后,研究了几种现实场景对分辨率和灵敏度的影响,包括光子损失,透视探测器,它们是其组合的那些,以及不平衡分束器。

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