光声光谱学
材料科学
光热治疗
可调谐激光吸收光谱技术
光热光谱学
光学
光谱学
音叉
检出限
探测器
光电子学
吸收光谱法
激光器
分析化学(期刊)
可调谐激光器
化学
纳米技术
物理
量子力学
振动
色谱法
波长
作者
Yufei Ma,Ying He,Yao Tong,Xin Yu,Frank K. Tittel
出处
期刊:Optics Express
[The Optical Society]
日期:2018-11-20
卷期号:26 (24): 32103-32103
被引量:241
摘要
A gas sensing method based on quartz-tuning-fork enhanced photothermal spectroscopy (QEPTS) is reported in this paper. Unlike usually used thermally sensitive elements, a sharply resonant quartz-tuning-fork with the capability of enhanced mechanical resonance was used to amplify the photothermal signal level. Acetylene (C2H2) detection was used to verify the QEPTS sensor performance. The measured results indicate a minimum detection limit (MDL) of 718 ppb and a normalized noise equivalent absorption coefficient (NNEA) of 7.63 × 10-9 cm-1W/√Hz. This performance demonstrates that QEPTS can be an ultra-high sensitive technique for gas detection and shows superiority when compared to usually used methods of tunable diode laser absorption spectroscopy (TDLAS) and quartz-enhanced photoacoustic spectroscopy (QEPAS). Furthermore, when compared to an optical detector, especially a costly mercury cadmium telluride (MCT) detector with cryogenic cooling used in TDLAS, a quartz-tuning-fork is much cheap and tiny. Besides, compared to the QEPAS technique, QEPTS is a non-contact measurement technique and therefore can be used for standoff and remote trace gas detection.
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