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近期前向布里渊散射研究进展:传感器应用。

Recent Advances in Forward Brillouin Scattering: Sensor Applications.

机构信息

Departmento de Física Aplicada y Electromagnetismo-ICMUV, Universidad de Valencia, Dr. Moliner 50, 46100 Burjassot, Spain.

出版信息

Sensors (Basel). 2022 Dec 28;23(1):318. doi: 10.3390/s23010318.

Abstract

In-fiber opto-mechanics based on forward Brillouin scattering has received increasing attention because it enables sensing the surrounding of the optical fiber. Optical fiber transverse acoustic resonances are sensitive to both the inner properties of the optical fiber and the external medium. A particularly efficient pump and probe technique-assisted by a fiber grating-can be exploited for the development of point sensors of only a few centimeters in length. When measuring the acoustic resonances, this technique provides the narrowest reported linewidths and a signal-to-noise ratio better than 40 dB. The longitudinal and transverse acoustic velocities-normalized with the fiber radius-can be determined with a relative error lower than 10, exploiting the derivation of accurate asymptotic expressions for the resonant frequencies. Using this technique, the Poisson's ratio of an optical fiber and its temperature dependence have been measured, reducing the relative error by a factor of 100 with respect to previously reported values. Using a single-point sensor, discriminative measurements of strain and temperature can be performed, achieving detection limits of ±25 με and ±0.2 °C. These results show the potential of this approach for the development of point sensors, which can be easily wavelength-multiplexed.

摘要

基于前向布里渊散射的光纤内光机械学受到了越来越多的关注,因为它能够感测光纤周围的环境。光纤横向声共振对光纤的内部性质和外部介质都很敏感。一种特别有效的泵浦和探测技术——借助光纤光栅——可以开发出只有几厘米长的点传感器。在测量声共振时,该技术提供了最窄的报道线宽和优于 40dB 的信噪比。通过对共振频率进行精确的渐近表达式推导,可以以低于 10 的相对误差确定声速(纵向和横向)-与光纤半径归一化。利用该技术,已经测量了光纤的泊松比及其温度依赖性,与之前报道的值相比,相对误差降低了 100 倍。使用单点传感器,可以进行应变和温度的区分测量,达到了±25με 和±0.2°C 的检测极限。这些结果表明了这种方法在开发点传感器方面的潜力,这种传感器可以很容易地进行波长复用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11de/9824415/490520843fc0/sensors-23-00318-g002.jpg

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