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飞秒激光微加工聚合物光纤布拉格光栅用于高灵敏度温度测量。

Femtosecond laser microprinting of a polymer fiber Bragg grating for high-sensitivity temperature measurements.

出版信息

Opt Lett. 2018 Jul 15;43(14):3409-3412. doi: 10.1364/OL.43.003409.

Abstract

We demonstrate the microprinting of a novel suspended polymer fiber Bragg grating for high-sensitivity temperature measurements. The proposed sensor was developed using a femtosecond laser-induced multiphoton polymerization technique. The grating was cured in a single-groove silica tube spliced between two single-mode fibers. Its transmission spectrum, mode field, and temperature response were thoroughly investigated. A sensitivity of -220  pm/°C was achieved over a temperature range of 24°C to 40°C, which is meaningful in biosensing applications. This all-in-fiber polymer Bragg grating exhibits high temperature sensitivity, excellent mechanical strength, and ultrahigh integration. As such, a temperature sensing element of this type would be a beneficial tool for biological measurements.

摘要

我们展示了一种新型悬浮聚合物光纤布拉格光栅的微打印技术,用于高灵敏度温度测量。该传感器是使用飞秒激光诱导的多光子聚合技术开发的。光栅在两段单模光纤之间的单槽石英管中固化。对其传输光谱、模式场和温度响应进行了深入研究。在 24°C 至 40°C 的温度范围内,实现了-220 pm/°C 的灵敏度,这在生物传感应用中具有重要意义。这种全光纤聚合物布拉格光栅具有高温度灵敏度、优异的机械强度和超高的集成度。因此,这种类型的温度传感元件将是生物测量的有益工具。

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