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Magnetic field interaction with guided light for detection of an active gaseous medium within an optical fiber

机译:磁场与引导光相互作用,用于检测光纤内的活性气态介质

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摘要

We report a novel fiber-optic sensing architecture for the detection of paramagnetic gases. By interacting a modulated magnetic field with guided light within a microstructured optical fiber, it is possible to exploit Faraday Rotation Spectroscopy (FRS) within unprecedentedly small sample volumes. This approach, which utilizes magnetic circular birefringence and magnetic circular dichroism effects, is applied to a photonic bandgap fiber to detect molecular oxygen and operates at a wavelength of 762.309 nm. The optical fiber sensor has a 4.2 nL detection volume and 14.8 cm long sensing region. The observed FRS spectra are compared with a theoretical model that provides a first understanding of guided-mode FRS signals. This FRS guided-wave sensor offers the prospect of new compact sensing schemes.
机译:我们报告了一种用于检测顺磁气体的新型光纤传感架构。通过在微结构化光纤内与引导光相互作用,可以在前所未有的小样本中利用法拉第旋转光谱(FRS)。利用磁性圆形双折射和磁性圆形二色性效应的这种方法应用于光子带隙纤维以检测分子氧,并在762.309nm的波长下操作。光纤传感器具有4.2 NL检测体积和14.8厘米的感测区域。将观察到的FRS光谱与理论模型进行比较,该理论模型提供了对引导模式FRS信号的首次理解。该FRS引导波传感器提供了新的紧凑型传感方案的前景。

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