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用于硫化氢痕量气体检测的太赫兹石英增强光声传感器。

THz quartz-enhanced photoacoustic sensor for H₂S trace gas detection.

作者信息

Spagnolo Vincenzo, Patimisco Pietro, Pennetta Riccardo, Sampaolo Angelo, Scamarcio Gaetano, Vitiello Miriam S, Tittel Frank K

出版信息

Opt Express. 2015 Mar 23;23(6):7574-82. doi: 10.1364/OE.23.007574.

Abstract

We report on a quartz-enhanced photoacoustic (QEPAS) gas sensing system for hydrogen sulphide (H₂S) detection. The system architecture is based on a custom quartz tuning fork (QTF) optoacoustic transducer with a novel geometry and a quantum cascade laser (QCL) emitting 1.1 mW at a frequency of 2.913 THz. The QTF operated on the first flexion resonance frequency of 2871 Hz, with a quality factor Q = 17,900 at 20 Torr. The tuning range of the available QCL allowed the excitation of a H₂S rotational absorption line with a line-strength as small as S = 1.13·10⁻²² cm/mol. The measured detection sensitivity is 30 ppm in 3 seconds and 13 ppm for a 30 seconds integration time, which corresponds to a minimum detectable absorption coefficient α(min) = 2.3·10⁻⁷ cm⁻¹ and a normalized noise-equivalent absorption NNEA = 4.4·10⁻¹⁰ W·cm⁻¹·Hz(-1/2), several times lower than the values previously reported for near-IR and mid-IR H₂S QEPAS sensors.

摘要

我们报道了一种用于检测硫化氢(H₂S)的石英增强光声(QEPAS)气体传感系统。该系统架构基于一个具有新颖几何结构的定制石英音叉(QTF)光声换能器,以及一台在2.913太赫兹频率下发射功率为1.1毫瓦的量子级联激光器(QCL)。QTF在2871赫兹的第一弯曲共振频率下工作,在20托时品质因数Q = 17900。可用QCL的调谐范围能够激发线强低至S = 1.13·10⁻²²厘米/摩尔的H₂S转动吸收线。测量得到的检测灵敏度在3秒内为30 ppm,积分时间为30秒时为13 ppm,这对应于最小可检测吸收系数α(min) = 2.3·10⁻⁷厘米⁻¹和归一化噪声等效吸收NNEA = 4.4·10⁻¹⁰瓦·厘米⁻¹·赫兹⁻¹/²,比先前报道的近红外和中红外H₂S QEPAS传感器的值低几倍。

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