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基于光致热弹性光谱技术的ppt级一氧化碳检测,探索定制石英音叉和中红外量子级联激光器。

Ppt level carbon monoxide detection based on light-induced thermoelastic spectroscopy exploring custom quartz tuning forks and a mid-infrared QCL.

作者信息

Qiao Shunda, Ma Yufei, He Ying, Patimisco Pietro, Sampaolo Angelo, Spagnolo Vincenzo

出版信息

Opt Express. 2021 Aug 2;29(16):25100-25108. doi: 10.1364/OE.434128.

Abstract

In this paper, we report on an ultra-highly sensitive light-induced thermoelastic spectroscopy (LITES)-based carbon monoxide (CO) sensor exploiting custom quartz tuning forks (QTFs) as a photodetector, a multi-pass cell and a mid-infrared quantum cascade laser (QCL) for the first time. The QCL emitting at 4.58 µm with output power of 145 mW was employed as exciting source and the multi-pass cell was employed to increase the gas absorption pathlength. To reduce the noise level, wavelength modulation spectroscopy (WMS) and second harmonic demodulation techniques were exploited. Three QTFs including two custom QTFs (#1 and #2) with different geometries and a commercial standard QTF (#3) were tested as photodetector in the gas sensor. When the integration time of the system was set at 200 ms, minimum detection limits (MDLs) of 750 part-per-trillion (ppt), 4.6 part-per-billion (ppb) and 5.8 ppb were achieved employing QTF #1 #2, and #3, respectively. A full sensor calibration was achieved using the most sensitive QTF#1, demonstrating an excellent linear response with CO concentration.

摘要

在本文中,我们首次报告了一种基于超高度灵敏的光致热弹性光谱(LITES)的一氧化碳(CO)传感器,该传感器利用定制石英音叉(QTF)作为光电探测器、多程池和中红外量子级联激光器(QCL)。采用输出功率为145 mW、发射波长为4.58 µm的QCL作为激发源,并采用多程池来增加气体吸收路径长度。为降低噪声水平,采用了波长调制光谱(WMS)和二次谐波解调技术。测试了三个QTF,包括两个具有不同几何形状的定制QTF(#1和#2)以及一个商用标准QTF(#3),将其作为气体传感器中的光电探测器。当系统的积分时间设置为200 ms时,使用QTF #1、#2和#3分别实现了750万亿分之一(ppt)、4.6十亿分之一(ppb)和5.8 ppb的最低检测限(MDL)。使用最灵敏的QTF#1实现了完整的传感器校准,表明其对CO浓度具有出色的线性响应。

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