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Recent advances of the quartz-enhanced photoacoustic trace gas detection technique

机译:石英增强光声痕量气体检测技术的最新进展

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Summary form only given. Quartz-enhanced photoacoustic spectroscopy (QEPAS) is an alternative approach to photoacoustic detection of trace gas, exploiting the enhancement of acoustic energy density provided by a quartz tuning fork (QTF), which acts as a high quality factor piezoelectric acoustic transducer and allowing the use of extremely small volumes [1]. We will report on the latest advances and new developments of QEPAS sensors operating in the near-IR, mid-IR and THz spectral ranges. We will review our latest scientific breakthroughs such as the realization of mid-IR fiber coupled QEPAS sensors for leak-detection, the realization of custom QTFs with different geometries resulting in an enhancement of optoacoustic generation efficiency [2]. The result obtained when operating custom QTFs in the THz spectral range [3] with laser sources of limited beam quality [4], and the first demonstration of QEPAS sensors operating in the QTF first overtone flexural mode [5, 6] will be reported.
机译:仅提供摘要表格。石英增强型光声光谱法(QEPAS)是痕量气体的光声检测的另一种方法,它利用了石英音叉(QTF)提供的声能密度的增强,该音叉起着高质量因子压电声换能器的作用,并允许使用极小的体积[1]。我们将报告在近红外,中红外和太赫兹光谱范围内运行的QEPAS传感器的最新进展和新进展。我们将回顾我们最新的科学突破,例如实现用于泄漏检测的中红外光纤耦合QEPAS传感器的实现,具有不同几何形状的定制QTF的实现,从而提高光声产生效率[2]。将报告在束质量有限的激光源下在THz光谱范围[3]中运行自定义QTF时获得的结果,以及在QTF第一泛音弯曲模式下[5,6]的QEPAS传感器的首次演示。

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