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Quartz-Enhanced Photothermal-Acoustic Spectroscopy for Trace Gas Analysis
oleh: Huadan Zheng, Haoyang Lin, Lei Dong, Zhao Huang, Xiaohang Gu, Jieyuan Tang, Linpeng Dong, Wenguo Zhu, Jianhui Yu, Zhe Chen
Format: | Article |
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Diterbitkan: | MDPI AG 2019-09-01 |
Deskripsi
A crystal quartz tuning fork (QTF) was used as a detector to collect and amplify laser-induced photoacoustic and photothermal waves simultaneously for trace chemical analysis. A wavelength modulation technique was applied to the proposed quartz-enhanced photothermal-acoustic spectroscopy (QEPTAS) to improve the detection signal-to-noise ratio. The QTF detector was exposed to the illumination of a near-infrared distributed feedback laser at distances of 1 m and 2 m to evaluate the QEPTAS sensor performance. The QEPTAS sensor performance was determined by detecting water vapor in ambient air using a near-infrared distributed feedback laser with a power of ~10 mW and a wavelength of 1.39 μm. With an optimized modulation depth of 0.47 cm<sup>−1</sup>, the normalized noise equivalent absorption (NNEA) coefficients of 8.4 × 10<sup>−7</sup> W·cm<sup>−1</sup>·Hz<sup>−1/2</sup> and 3.7 × 10<sup>−6</sup> W·cm<sup>−1</sup>·Hz<sup>−1/2</sup> were achieved for a distance of 1 m and 2 m, respectively. The developed QEPTAS technique reduces the requirements for laser beam quality, resulting in a simple but robust sensor structure and demonstrates the ability of remote sensing of gas concentrations.