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首页> 外文期刊>Applied Physics B: Lasers and Optics >Tuning fork enhanced interferometric photoacoustic spectroscopy: a new method for trace gas analysis
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Tuning fork enhanced interferometric photoacoustic spectroscopy: a new method for trace gas analysis

机译:音叉增强干涉光声光谱:痕量气体分析的新方法

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摘要

A photoacoustic trace gas sensor based on an optical read-out method of a quartz tuning fork is shown. Instead of conventional piezoelectric signal read-out, as applied in well-known quartz-enhanced photoacoustic spectroscopy (QEPAS), an interferometric read-out method for measurement of the tuning fork’s oscillation is presented. To demonstrate the potential of the optical read-out of tuning forks in photoacoustics, a comparison between the performances of a sensor with interferometric read-out and conventional QEPAS with piezoelectric read-out is reported. The two sensors show similar characteristics. The detection limit (L) for the optical read-out is determined to be L opt=(2598±84) ppm (1σ) compared to L elec=(2579±78) ppm (1σ) for piezoelectric read-out. In both cases the detection limit is defined by the thermal noise of the tuning fork.
机译:示出了基于石英音叉的光学读出方法的光声痕量气体传感器。代替了众所周知的石英增强光声光谱法(QEPAS)中所应用的常规压电信号读出,提出了一种干涉式读出方法,用于测量音叉的振动。为了演示音叉在光声中的光学读数的潜力,报告了具有干涉式读数的传感器和具有压电式读数的传统QEPAS的性能之间的比较。这两个传感器显示出相似的特性。光学读出的检测极限(L)被确定为L opt =(2598±84)ppm(1σ),而L elec =(2579± 78)ppm(1σ)用于压电读出。在这两种情况下,检测极限均由音叉的热噪声定义。

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