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Multicore fiber sensor for high-temperature applications up to 1000℃

机译:多芯光纤传感器,适用于高达1000℃的高温应用

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摘要

A novel high temperature sensor based on customized multicore fiber (MCF) is proposed and experimentally demonstrated. The sensor consists of a short, few-centimeter-long segment of MCF spliced between two standard single-mode fibers. Due to interference effects, the transmission spectrum through this fiber chain features sharp and deep notches. Exposing the MCF segment to increasing temperatures of up to 1000℃ results in a shift of the transmission notches toward longer wavelengths with a slope of approximately 29 pm/℃ at lower temperatures and 52 pm/℃ at higher temperatures, enabling temperature measurements with high sensitivity and accuracy. Due to its compact size and mechanical rigidity, the MCF sensor can be subjected to harsh environments. The fabrication of the MCF sensor is straightforward and reproducible, making it an inexpensive fiber device.
机译:提出了一种基于定制多芯光纤(MCF)的新型高温传感器,并进行了实验验证。该传感器由拼接在两条标准单模光纤之间的一小段,几厘米长的MCF组成。由于干扰效应,通过该光纤链的传输频谱具有尖锐而深的凹口。将MCF段暴露在最高1000℃的高温下会导致传输陷波移向更长的波长,在较低的温度下斜率约为29 pm /℃,在较高的温度下斜率约为52 pm /℃,从而可以进行高灵敏度的温度测量和准确性。由于其紧凑的尺寸和机械刚度,MCF传感器可经受恶劣的环境。 MCF传感器的制造简单易行,可重复生产,从而使其成为一种廉价的光纤设备。

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