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基于傅里叶域锁模激光器的高速折射率传感系统。

High-speed refractive index sensing system based on Fourier domain mode locked laser.

作者信息

Cao Yuan, Wang Lin, Lu Zhong, Wang Guangying, Wang Xudong, Ran Yang, Feng Xinhuan, Guan Bai-Ou

出版信息

Opt Express. 2019 Mar 18;27(6):7988-7996. doi: 10.1364/OE.27.007988.

Abstract

A high-speed refractive index sensing system based on the Fourier domain mode locked laser (FDML) and a microfiber Bragg grating (mFBG) is theoretically studied and experimentally demonstrated. Unlike traditional physical parameter sensing systems, which directly use the FDML as the wavelength scanning source and the optical sensor as the spectra shaping component, we inserted an mFBG into the FDML cavity in order to generate time domain pulse signals used for sensing. The wavelength shift in optical frequency domain is converted into time domain pulse drift. The sensitivity of the proposed refractive index (RI) sensing system is improved by two orders of magnitude, compared with the wavelength monitoring method. The scanning speed is as high as 43 kHz. Moreover, the sensitivity curve can be adjusted by tuning the direct current voltage. The nonlinear sensitivity and linear sensitivity with RI can be achieved.

摘要

对基于傅里叶域锁模激光器(FDML)和微光纤布拉格光栅(mFBG)的高速折射率传感系统进行了理论研究和实验验证。与传统物理参数传感系统不同,传统系统直接将FDML用作波长扫描源,将光学传感器用作光谱整形组件,我们在FDML腔内插入了一个mFBG,以生成用于传感的时域脉冲信号。光频域中的波长偏移被转换为时域脉冲漂移。与波长监测方法相比,所提出的折射率(RI)传感系统的灵敏度提高了两个数量级。扫描速度高达43 kHz。此外,灵敏度曲线可通过调节直流电压来调整。可以实现与RI相关的非线性灵敏度和线性灵敏度。

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