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Wavelength response of a surface plasmon resonance palladium-coated optical fiber sensor for hydrogen detection

机译:用于氢检测的表面等离子体激元共振镀钯光纤传感器的波长响应

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摘要

An optical fiber using palladium as sensitive layer is characterized in the range of 450 to 900 nm. The sensitive layer is deposited on the outside of a multimode fiber, after removing the optical cladding. The sensor is based on a measurement technique that uses the surface plasmon resonance effect. A continuous change in output intensity is observed as a function of the hydrogen concentration between 0.5% and 4% H2 by volume in Argon. The response shows that the transmitted intensity can either decrease or increase, depending on the selected wavelength. This behavior is directly related to the change in reflectance upon hydrogenation between the polarization s and p. The loading time is 30 s and the unloading time is 90 s in a mix of argon and 10% of oxygen. The detectors show a good reproducibility.
机译:使用钯作为敏感层的光纤的特征是在450至900nm的范围内。除去光学包层后,敏感层沉积在多模光纤的外部。该传感器基于使用表面等离子体共振效应的测量技术。观察到输出强度的连续变化是氩气中氢气浓度介于0.5%和4%H2之间的函数。响应表明,取决于所选波长,透射强度可以减小或增大。此行为与极化s和p之间氢化时反射率的变化直接相关。在氩气和10%氧气的混合物中,加载时间为30 s,卸载时间为90 s。检测器显示出良好的可重复性。

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