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基于2.33微米二极管激光器和自适应Savitzky-Golay滤波的光致热弹性光谱法实现高灵敏度甲烷检测。

Highly sensitive methane detection based on light-induced thermoelastic spectroscopy with a 2.33 µm diode laser and adaptive Savitzky-Golay filtering.

作者信息

Liu Xiaonan, Qiao Shunda, Ma Yufei

出版信息

Opt Express. 2022 Jan 17;30(2):1304-1313. doi: 10.1364/OE.446294.

Abstract

In this manuscript, a highly sensitive methane (CH) sensor based on light-induced thermoelastic spectroscopy (LITES) using a 2.33 µm diode laser with high power is demonstrated for the first time. A quartz tuning fork (QTF) with an intrinsic resonance frequency of 32.768 kHz was used to detect the light-induced thermoelastic signal. A Herriot multi-pass cell with an effective optical path of 10 m was adopted to increase the laser absorption. The laser wavelength modulation depth and concentration response of this CH-LITES sensor were investigated. The sensor showed excellent long term stability when Allan deviation analysis was performed. An adaptive Savitzky-Golay (S-G) filtering algorithm with χ2 statistical criterion was firstly introduced to the LITES technique. The SNR of this CH-LITES sensor was improved by a factor of 2.35 and the minimum detection limit (MDL) with an integration time of 0.1 s was optimized to 0.5 ppm. This reported CH-LITES sensor with sub ppm-level detection ability is of great value in applications such as environmental monitoring and industrial safety.

摘要

在本论文中,首次展示了一种基于光致热弹性光谱(LITES)的高灵敏度甲烷(CH)传感器,该传感器使用高功率的2.33 µm二极管激光器。采用固有共振频率为32.768 kHz的石英音叉(QTF)来检测光致热弹性信号。采用有效光程为10 m的赫里奥特多程池来增加激光吸收。研究了该CH-LITES传感器的激光波长调制深度和浓度响应。进行阿伦偏差分析时,该传感器显示出优异的长期稳定性。首次将具有χ2统计准则的自适应萨维茨基-戈莱(S-G)滤波算法引入到LITES技术中。该CH-LITES传感器的信噪比提高了2.35倍,积分时间为0.1 s时的最低检测限(MDL)优化至0.5 ppm。这种报道的具有亚ppm级检测能力的CH-LITES传感器在环境监测和工业安全等应用中具有重要价值。

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