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Theoretical analysis of off beam quartz-enhanced photoacoustic spectroscopy sensor

机译:离束石英增强光声光谱传感器的理论分析

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Off beam quartz-enhanced photoacoustic spectroscopy (OB-QEPAS) sensors are based on a recently developed approach to off-beam photoacoustic (PA) detection which employs a quartz tuning fork (QTF) as an acoustic transducer. A microresonator (mR) with a side slit in the middle is used to enhance PA signal. This paper describes a theoretical model of an OB-QEPAS-based sensor. By deriving the acoustic impedances of the mR at two ends and the side slit in the middle in the model, we obtain a formula for numerically calculating the optimal mRs' parameters of OB-QEPAS-based sensor. We use the model to calculate the optimal mRs' lengths with respect to the resonant frequency of the QTF, acoustic velocities inside mRs, inner diameters of mRs, and acoustic conductivities of the mRs' side slits, and found out that the calculated results closely match experimental data. We also investigated the relationship between the mR selected in "on beam" QEPAS, OB-QEPAS, and an acoustic resonator (AR) excited in its first longitudinal mode used in conventional photoacoustic spectroscopy (PAS).
机译:束外石英增强光声光谱(OB-QEPAS)传感器基于最近开发的束外光声(PA)检测方法,该方法采用石英音叉(QTF)作为声换能器。中间有侧缝的微谐振器(mR)用于增强PA信号。本文介绍了基于OB-QEPAS的传感器的理论模型。通过推导模型两端的mR和中间的侧缝的声阻抗,我们得到了一个公式,用于数值计算基于OB-QEPAS的传感器的最佳mRs参数。我们使用该模型来计算相对于QTF的共振频率,mRs内的声速,mRs的内径和mRs的侧缝声导率的最佳mRs长度,并发现计算结果非常匹配实验数据。我们还研究了在“束上” QEPAS,OB-QEPAS中选择​​的mR与在传统光声光谱(PAS)中使用的其第一纵向模式激发的声谐振器(AR)之间的关系。

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