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Optical fiber vacuum sensor based on modal interferometer and PDMS coating

机译:基于模态干涉仪和PDMS涂层的光纤真空传感器

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This work studies the behavior of polydimethylsiloxane (PDMS) as a transducer for optical vacuum pressure measurements. The optical structure chosen for this device is a modal interferometer achieved by splicing a coreless multimode optical fiber between two single mode fibers. Then, an etching process is applied to the obtained device, in order to decrease the diameter of the fiber and increase the sensitivity. Finally, the fiber is coated by dip-coating with a layer of PDMS, which changes its volume with pressure changes. The device has been studied in the 1×10~(-3) mbar to 10 mbar range with a wavelength shift of 4 nm. A maximum sensitivity of 35 nm/mbar was obtained. The simple fabrication process, which can be applied to more sensitive structures, suggest that PDMS can be a good choice for the development of optical fiber vacuum sensors.
机译:这项工作研究了聚二甲基硅氧烷(PDMS)作为用于光学真空压力测量的换能器的行为。所选择的该装置选择的光学结构是通过在两个单模纤维之间拼接无芯多模光纤而实现的模态干涉仪。然后,将蚀刻过程施加到所获得的装置上,以减小光纤的直径并提高灵敏度。最后,通过用一层PDMS浸涂涂覆纤维,其随压力变化而变化。该装置已经在1×10〜(-3)毫巴中研究到10毫巴范围,波长偏移为4nm。获得了35nm / mbar的最大灵敏度。可以应用于更敏感的结构的简单制造过程表明PDMS可以是光纤真空传感器的开发的良好选择。

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