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Technical note: Self calibration in a fiber optic sensing system using the entangled photon states walk-off compensation

机译:技术说明:使用纠缠的光子状态走偏补偿的光纤传感系统中的自校准

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摘要

We present a concept of a self calibration of the classical and quantum parameters measurement using a fiber optic system. The measurement of the change in phase of the optimum entangled states visibility, which is performed in term of a walk-off length, i.e. birefringence. The applied two physical parameters (i.e. force/stress and temperature) on the sensing fiber can be simultaneously measured, whereas the self calibration respecting to the entangled photon walk-off length can be performed. The scheme of the entangled photons generation in fiber optic is reviewed and the walk-off on the polarization entangled states presented. The potential of self calibration and simultaneous measurement using an interferometric sensing technique and fiber grating sensor are proposed and discussed. The entangled photon walk-off compensation when the sensing fiber was in the thermal controlled environment presented and discussed.
机译:我们提出了使用光纤系统对经典参数和量子参数进行自校准的概念。最佳纠缠态可见度的相位变化的测量是根据离散长度即双折射来进行的。可以同时测量在传感光纤上施加的两个物理参数(即力/应力和温度),而可以执行关于纠缠的光子游走长度的自校准。综述了光纤中纠缠光子产生的方案,并提出了偏振纠缠态的离散现象。提出并讨论了使用干涉传感技术和光纤光栅传感器进行自校准和同时测量的潜力。提出并讨论了当传感光纤处于热控环境中时纠缠的光子走离补偿。

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