论文标题

证明具有光子计数的二元相干状态的最佳非注射式测量

Demonstration of optimal non-projective measurement of binary coherent states with photon counting

论文作者

DiMario, M. T., Becerra, F. E.

论文摘要

量子状态歧视是量子测量理论中的一个核心问题,其应用从量子通信到计算。国家歧视的典型测量范例涉及误差或明确歧视的最小概率,并具有最低确定结果的可能性。另外,对于给定的不确定的概率,最佳的不确定测量值,非标准测量值可实现最小的误差。这种更一般的测量包括国家歧视的标准测量范例,并为量子信息和通信提供了更强大的工具。在这里,我们通过实验证明了使用线性光学器件和单光子检测对二进制相干态进行区分的最佳测量。我们的演示使用基于干扰,单光子检测和快速反馈的连贯位移操作,以准备最佳的反馈策略,以使用高忠诚度进行最佳的非项目的量子测量。这种广泛的测量使我们能够以最佳方式从标准测量范例之间过渡,从最小误差到二元相干状态的明确测量。作为一种特殊情况,我们使用此一般测量来实现相相关状态的最佳最小误差测量,这是在平均功率约束下通信的最佳调制。此外,我们提出了一种混合测量,该混合度测量与顺序,明确的态度消除相结合,利用二进制最佳的不确定测量值,以实现对相干状态的更高维度不确定的测量。

Quantum state discrimination is a central problem in quantum measurement theory, with applications spanning from quantum communication to computation. Typical measurement paradigms for state discrimination involve a minimum probability of error or unambiguous discrimination with a minimum probability of inconclusive results. Alternatively, an optimal inconclusive measurement, a non-projective measurement, achieves minimal error for a given inconclusive probability. This more general measurement encompasses the standard measurement paradigms for state discrimination and provides a much more powerful tool for quantum information and communication. Here, we experimentally demonstrate the optimal inconclusive measurement for the discrimination of binary coherent states using linear optics and single-photon detection. Our demonstration uses coherent displacement operations based on interference, single-photon detection, and fast feedback to prepare the optimal feedback policy for the optimal non-projective quantum measurement with high fidelity. This generalized measurement allows us to transition among standard measurement paradigms in an optimal way from minimum error to unambiguous measurements for binary coherent states. As a particular case, we use this general measurement to implement the optimal minimum error measurement for phase-coherent states, which is the optimal modulation for communications under the average power constraint. Moreover, we propose a hybrid measurement that leverages the binary optimal inconclusive measurement in conjunction with sequential, unambiguous state elimination to realize higher dimensional inconclusive measurements of coherent states.

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