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Hong-Ou-Mandel interferometry on a biphoton beat note

机译:双光子节拍音符上的Hong-Ou-Mandel干涉法

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Hong-Ou-Mandel interference, the fact that identical photons that arrive simultaneously on different input ports of a beam splitter bunch into a common output port, can be used to measure optical delays between different paths. It is generally assumed that great precision in the measurement requires that photons contain many frequencies, i.e., a large bandwidth. Here we challenge this "well-known" assumption and show that the use of two well-separated frequencies embedded in a quantum entangled state (discrete color entanglement) suffices to achieve great precision. We determine optimum working points using a Fisher Information analysis and demonstrate the experimental feasibility of this approach by detecting thermally-induced delays in an optical fiber. These results may significantly facilitate the use of quantum interference for quantum sensing, by avoiding some stringent conditions such as the requirement for large bandwidth signals.
机译:Hong-Ou-Mandel干扰是同一光子同时到达分束器的不同输入端口并进入公共输出端口这一事实,可用于测量不同路径之间的光学延迟。通常认为,测量中的高精度要求光子包含许多频率,即大带宽。在这里,我们挑战这个“众所周知”的假设,并表明使用嵌入量子纠缠态(离散色纠缠)的两个完全分开的频率足以达到很高的精度。我们使用Fisher信息分析确定最佳工作点,并通过检测光纤中的热诱导延迟来证明这种方法的实验可行性。通过避免一些严格的条件(例如对大带宽信号的要求),这些结果可能会大大促进将量子干扰用于量子感测。

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