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Polarization Mode Coupling Involved in a Capillary Optical Fiber Sensor: Modeling and Experimental Validation

机译:毛细管光纤传感器涉及的偏振模耦合:建模和实验验证

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摘要

Theoretical and experimental work is reported on a distributed polarimetric fiber optic sensor designed for application in capillary gas chromatography. The emphasis is made on the modeling of the polarization mode coupling mechanism in relation to the vapor zone distribution. Conditions are established to quantify the vapors' amount in the capillary from a Fourier analysis of the time-modulated optical signal. The model predicts an exponential temporal decay of the modulation amplitude for any initial vapor zone distribution at the injection and the quantification is related to the pre-exponential factor.
机译:据报道设计用于毛细管气相色谱的分布式偏振光纤传感器的理论和实验工作。重点放在与蒸汽区分布有关的偏振模耦合机制的建模上。建立了条件,以通过对时间调制的光信号进行傅立叶分析来量化毛细管中的蒸汽量。该模型预测了进样时任何初始蒸气区分布的调制幅度的指数时间衰减,并且量化与指数前因子有关。

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