首页> 外文会议>Optical Methods in the Life Sciences; Progress in Biomedical Optics and Imaging; vol.7 no.40; Proceedings of SPIE-The International Society for Optical Engineering; vol.6386 >Gas phase photoacoustic spectroscopy in the long-wave IR using quartz tuning forks and amplitude modulated quantum cascade lasers
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Gas phase photoacoustic spectroscopy in the long-wave IR using quartz tuning forks and amplitude modulated quantum cascade lasers

机译:使用石英音叉和调幅量子级联激光器在长波红外中进行气相光声光谱

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摘要

We demonstrate the performance of a novel long-wave infrared photoacoustic laser absorbance spectrometer for gas-phase species using an amplitude modulated (AM) quantum cascade (QC) laser and a quartz tuning fork microphone. Photoacoustic signal was generated by focusing the output of a Fabry-Perot QC laser operating at 8.41 μm between the legs of a quartz tuning fork which served as a transducer for the transient acoustic pressure wave. The QC laser was modulated at the resonant frequency of the tuning fork (32.8 kHz). This sensor was calibrated using the infrared absorber Freon-134a by performing a simultaneous absorption measurement using a 35 cm absorption cell. The NEAS of this instrument wasrndetermined to be 2 x 10~(-8) W·cm~(-1)/(Hz)~(1/2), and the fundamental sensitivity of this technique is limited by the noise floor of the tuning fork itself.
机译:我们演示了使用调幅(AM)量子级联(QC)激光和石英音叉麦克风的气相物种的新型长波红外光声激光吸收光谱仪的性能。光声信号是通过将工作在8.41μm的Fabry-Perot QC激光器的输出聚焦在石英音叉的两腿之间产生的,该音叉充当瞬态声压波的换能器。 QC激光器以音叉的共振频率(32.8 kHz)进行调制。通过使用35 cm吸收池同时进行吸收测量,使用红外吸收剂Freon-134a对该传感器进行了校准。将该仪器的NEAS确定为2 x 10〜(-8)W·cm〜(-1)/(Hz)〜(1/2),该技术的基本灵敏度受到噪声的限制。音叉本身。

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