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Signal detection using biphotons and potential application in axion-like particle search

机译:信号检测使用双相子和潜在应用在轴上的粒子搜索中

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摘要

This paper presents a new optical system for detecting light signals associated with the change in incoming photon number. The system employs quantum correlation of photon pairs created via spontaneous parametric down-conversion (SPDC). The signal, if present, will perturb the flux of the incident photon stream. The perturbed photon stream is first projected through a birefringent crystal where SPDC occurs, converting a single high-energy photon into a pair of low-energy photons. The photons in each pair eventually arrive at separate detectors. By examining the biphoton correlation using the probability distribution of the photons at the detectors, which varies depending on the displacement of the main “pump” photon stream and the change in the number of photons, the small optical displacement of the photon stream and its variance can be determined. The change in incident photon number, in other words, the presence of light signal does not influence the average of the measured optical displacement values. Nevertheless, the change in optical displacement measurement variance when the number of incident photons has changed detects the light signal. This optical setup enables the detection of light signals with low noise and remarkably high precision and sensitivity using quantum correlation. The proposed technique has potential application for axion-like particle search in experimental high energy physics.
机译:本文介绍了一种用于检测与传入光子数的变化相关的光信号的新光学系统。该系统采用通过自发参数下转换(SPDC)创建的光子对的量子相关性。如果存在的话,则信号将扰乱入射光节流的通量。首先通过双折射晶体突出扰动光子流,其中SPDC发生,将单个高能光子转换成一对低能量光子。每对的光子最终到达单独的检测器。通过使用探测器处的光子的概率分布检查双光子相关性,这取决于主“泵”光子流的位移和光子数量的变化,光子流的小光学位移及其方差可以确定。事件光子数的变化换句话说,光信号的存在不会影响测量的光学位移值的平均值。然而,当入射光子的数量改变时,光学位移测量方差的变化检测光信号。该光学设置使得能够检测具有低噪声的光信号,并且使用量子相关性具有显着的精度和灵敏度。所提出的技术具有实验高能量物理学中的轴轴粒子搜索的潜在应用。

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