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High-sensitivity cryogenic temperature sensors using pressurized fiber Bragg gratings

机译:使用加压光纤布拉格光栅的高灵敏度低温温度传感器

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摘要

Cryogenic temperature sensing was studied using a pressurized fiber Bragg grating (PFBG). The PFBG was obtained by simply applying a small diametric load to a regular fiber Bragg grating (FBG), which was coated with polyimide of a thickness of 11 micrometers. The Bragg wavelength of the PFBG was measured at temperatures from 295 to 4.2 K. A pressure-induced transition occurred at 200 K during the cooling cycle. As a result the temperature sensitivity of the PFBG was found to be nonlinear but reach 24 pm/K below 200 K, more than three times the regular FBG. For the temperature change from 80 K to 10 K, the PFBG has a total Bragg wavelength shift of about 470 pm, 10 times more than the regular FBG. From room temperature to liquid helium temperature the PFBG gives a total wavelength shift of 3.78 nm, compared to the FBG of 1.51 nm. The effect of the coating thickness on the temperature sensitivity of the gratings is also discussed.
机译:使用加压光纤布拉格光栅(PFBG)研究了低温温度感测。 PFBG是通过简单地将小直径负载施加到常规光纤布拉格光栅(FBG)上而获得的,该光纤光栅涂有厚度为11微米的聚酰亚胺。在295至4.2 K的温度下测量了PFBG的布拉格波长。在冷却周期中,压力诱导的转变在200 K处发生。结果,发现PFBG的温度敏感性是非线性的,但在200 K以下时达到24 pm / K,是常规FBG的三倍以上。对于从80 K到10 K的温度变化,PFBG的总布拉格波长偏移约为470 pm,是常规FBG的10倍。从室温到液氦温度,PFBG的总波长偏移为3.78 nm,而FBG的总波长偏移为1.51 nm。还讨论了涂层厚度对光栅温度敏感性的影响。

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