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Orientation-free pressure sensor based on pi-shifted single-mode-fiber Sagnac interferometer

机译:基于pi位移单模光纤Sagnac干涉仪的无方向性压力传感器

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摘要

We propose and analyze a novel orientation-free pressure sensor based on a pi-shifted all-single-mode-fiber (SMF) Sagnac interferometer. Compared with a conventional pressure sensor based on high-birefringence polarization-maintaining fiber, this all-SMF structure is more simple, stable, and economical. Because an initial pi shift is introduced into the Sagnac loop by adjusting actively the polarization controller, the intensity response of the sensor is independent of the birefringence orientation associated with the device under test (DUT). This configuration not only eliminates the effect of an uncertain birefringence orientation in the fiber loop, it also exhibits excellent repeatability and high sensitivity, which will ease the following demodulation of the measurand. The Jones matrix method is used to analyze the orientation-free characteristic of this sensor, and some theoretical and experimental results are also given.
机译:我们提出并分析了一种基于pi位移的全单模光纤(SMF)Sagnac干涉仪的新型无方向性压力传感器。与基于高双折射偏振光纤的传统压力传感器相比,这种全SMF结构更加简单,稳定和经济。由于通过主动调节偏振控制器将初始pi位移引入Sagnac环路,因此传感器的强度响应独立于与被测设备(DUT)相关的双折射取向。这种配置不仅消除了光纤环路中不确定的双折射取向的影响,而且还具有出色的可重复性和高灵敏度,这将简化被测物的后续解调。琼斯矩阵方法用于分析该传感器的无定向特性,并给出了一些理论和实验结果。

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