Exact quantum sensing limits for bosonic dephasing channels

Zixin Huang, Ludovico Lami, Mark M. Wilde
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Abstract

Dephasing is a prominent noise mechanism that afflicts quantum information carriers, and it is one of the main challenges towards realizing useful quantum computation, communication, and sensing. Here we consider discrimination and estimation of bosonic dephasing channels, when using the most general adaptive strategies allowed by quantum mechanics. We reduce these difficult quantum problems to simple classical ones based on the probability densities defining the bosonic dephasing channels. By doing so, we rigorously establish the optimal performance of various distinguishability and estimation tasks and construct explicit strategies to achieve this performance. To the best of our knowledge, this is the first example of a non-Gaussian bosonic channel for which there are exact solutions for these tasks.
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玻色子去相通道的精确量子传感极限
去相是困扰量子信息载体的一个突出噪声机制,也是实现有用的量子计算、通信和传感所面临的主要挑战之一。在这里,我们考虑在使用量子力学允许的最一般自适应策略时,对玻色消隐信道进行辨别和估计。我们根据定义玻色消隐通道的概率密度,将这些困难的量子问题简化为简单的经典问题。通过这样做,我们严格确定了各种可区分性和估计任务的最佳性能,并构建了实现这种性能的明确策略。据我们所知,这是第一个非高斯玻色信道的例子,其中存在这些任务的精确解。
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