Opt Lett. 2023 Apr 1;48(7):1678-1681. doi: 10.1364/OL.481457.
In this work, Helmholtz-resonator quartz-enhanced photoacoustic spectroscopy (HR-QEPAS) was developed for trace gas sensing. A pair of Helmholtz resonators with high-order resonance frequency was designed and coupled with a quartz tuning fork (QTF). Detailed theoretical analysis and experimental research were carried out to optimize the HR-QEPAS performance. As a proof-of-concept experiment, the water vapor in the ambient air was detected using a 1.39 µm near-infrared laser diode. Benefiting from the acoustic filtering of the Helmholtz resonance, the noise level of QEPAS was reduced by >30%, making the QEPAS sensor immune to environmental noise. In addition, the photoacoustic signal amplitude was improved significantly by >1 order of magnitude. As a result, the detection signal-to-noise ratio was enhanced by >20 times, compared with a bare QTF.
在这项工作中,我们开发了基于声子回旋共振的石英增强光声光谱(HR-QEPAS)技术用于痕量气体传感。我们设计了一对具有高阶谐振频率的声子回旋共振器,并将其与石英音叉(QTF)耦合。我们进行了详细的理论分析和实验研究,以优化 HR-QEPAS 的性能。作为概念验证实验,我们使用 1.39μm 的近红外激光二极管检测环境空气中的水蒸气。得益于声子回旋共振的声学滤波,QEPAS 的噪声水平降低了>30%,使 QEPAS 传感器能够免受环境噪声的干扰。此外,光声信号幅度也显著提高了>1 个数量级。因此,与裸 QTF 相比,检测信号的信噪比提高了>20 倍。