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基于正交干涉集成光学的无偏置光学电流传感器。

Bias-free optical current sensors based on quadrature interferometric integrated optics.

作者信息

Kim Sung-Moon, Park Tae-Hyun, Huang Guanghao, Oh Min-Cheol

出版信息

Opt Express. 2018 Nov 26;26(24):31599-31606. doi: 10.1364/OE.26.031599.

Abstract

A reflective quadrature interferometer was constructed by integrating polymeric optical waveguide components, to demonstrate an optical current sensor that could operate without bias feedback control. In order to obtain two interference signals with a phase difference of 90°, half-wave and quarter-wave plates were inserted in the polymeric optical waveguide chip, and a polarization-dependent birefringence modulator was used for the initialization of the optical sensor, including detector gain adjustment. During the bias-free operation of the sensor, the measurement error was less than ± 0.2%, and it was confirmed that the sensor output was stable for 15 h even if the operating point was not maintained.

摘要

通过集成聚合物光波导组件构建了一种反射式正交干涉仪,以演示一种无需偏置反馈控制即可运行的光学电流传感器。为了获得相位差为90°的两个干涉信号,在聚合物光波导芯片中插入了半波片和四分之一波片,并使用偏振相关双折射调制器对光学传感器进行初始化,包括探测器增益调整。在传感器无偏置运行期间,测量误差小于±0.2%,并且证实即使不维持工作点,传感器输出也能稳定15小时。

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