The fabrication of a distributed-feedback quantum cascade laser emitting at around 4.6 μm and its application in photoacoustic detection of trace CO gas

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机构
[1] [1,Tan, S.
[2] Zhang, J.-C.
[3] Wang, L.-J.
[4] Chen, J.-Y.
[5] Liu, J.-Q.
[6] Liu, F.-Q.
[7] Wang, Z.-G.
来源
Wang, L.-J. | 1600年 / Old City Publishing卷 / 29期
关键词
Photoacoustic spectroscopy - Continuous wave lasers - Pulsed lasers - Distributed feedback lasers - Gas detectors - Gases - Photoacoustic effect - Carbon monoxide;
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摘要
Photoacoustic (PA) detection of CO gas was demonstrated by using self-designed distributed-feedback quantum cascade laser (DFB-QCL) emitting at around 4.6 μm. Details of the laser fabrication and the PA detection system are described. Single-mode lasers were designed to cover the strong CO absorption lines by using a buried first-order grating. Though the grating period is 0.72 μm which is not the most appropriate period to get the highest performance lasers made from our epitaxial material, single-mode room temperature continuous wave (CW) operation (side-mode suppression ration (SMSR) above 25 dB) and pulsed operation at 70°C were achieved. By using a differential Helmholtz resonant PA cell with 11 cm path length, the PA spectra for different CO concentrations from 120 to 10 μmol/mol were obtained at room temperature. © 2014 Old City Publishing, Inc.
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