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Polarization mode dispersion in radio-frequency interferometric embedded fiber-optic sensors

机译:射频干涉嵌入式光纤传感器中的偏振模色散

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摘要

The effect of fiber birefringence on the propagation delay in an embedded fiber-optic strain sensor is studied. The polarization characteristics of the sensor are described in terms of polarization mode dispersion through the principal states of polarization and their differential group delay. Using these descriptors, an analytical expression for the response of the sensor for an arbitrary input state of polarization is given and experimentally verified. It is found that the differential group delay, as well as the input and output principal states of polarization, vary when the embedded fiber is strained, leading to fluctuations in the sensor output. The use of high birefringence fibers and different embedding geometries is examined as a means for reducing the polarization dependency of the sensor.
机译:研究了光纤双折射对嵌入式光纤应变传感器中传输延迟的影响。通过偏振的主要状态及其差分群延迟,根据偏振模色散描述传感器的偏振特性。使用这些描述符,给出了传感器对任意偏振输入状态的响应的解析表达式,并进行了实验验证。我们发现,当嵌入式光纤拉紧时,差分群延迟以及偏振的输入和输出主状态会发生变化,从而导致传感器输出出现波动。研究了使用高双折射光纤和不同的嵌入几何形状来减少传感器的偏振依赖性。

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