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Heterodyne Phase-Sensitive Dispersion Spectroscopy in the Mid-Infrared with a Quantum Cascade Laser

机译:带量级联激光器中红外线中的外差相相敏分散光谱

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摘要

Molecular dispersion spectroscopy encompasses a. group of spectroscopic techniques for gas analysis that retrieve the characteristics of the sample from the measurement of the profile of its refractive index in the vicinity of molecular resonances. This approach, which is in clear contrast to traditional methods based on the detection of absorption, provides inherent immunity to power fluctuations, calibration-free operation, and an output that is linearly dependent on gas concentration. Heterodyne phase-sensitive dispersion spectroscopy (HPSDS) is a very recently proposed technique for molecular dispersion spectroscopy based on tunable lasers that is characterized by a very simple architecture in which data processing and concentration retrieval are straightforward. Different HPSDS implementations have been experimentally validated in the near-IR. Here, we present the first demonstration of HPSDS in the mid-IR using a directly modulated quantum cascade laser for the measurement of CO. The setup is put under test to characterize its response to changing concentrations, pressures, and levels of optical intensity on the detector, and the limit of detection is estimated. Besides this, an experimental comparison with wavelength modulation spectroscopy with second-harmonic detection (2f-WMS) is performed and discussed in detail in order to offer a clear view of the benefits and drawbacks that HPSDS can provide over what we could consider the reference method for gas analysis based on tunable laser spectroscopy.
机译:分子分散体谱涵盖a。用于气体分析的基团光谱技术,从分子共振附近的测量中检索样品的特性。这种方法与基于吸收检测的传统方法明确对比,提供了对功率波动,无校准操作的固有的免疫力,以及线性地取决于气体浓度的输出。外差相相敏分散光谱(HPSD)是基于可调激光器的分子分散光谱学的最近提出的技术,其特征在于,数据处理和浓度检索是简单的非常简单的架构。在近红外,已经在实验验证了不同的HPSD实施。在这里,我们使用直接调制的量子级联激光器在MID-IR中提供了用于测量CO的MID-IR中的第一次演示。进行了对变化浓度,压力和光学强度水平的响应来表现出对浓度,压力和光学强度水平的响应。探测器,估计检测限。除此之外,对具有二次谐波检测(2F-WMS)的与波长调制光谱的实验比较,并详细地讨论,以便提供清晰的益处和缺点,即HPSD可以提供我们可以考虑参考方法的原因基于可调激光光谱的气体分析。

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  • 来源
    《Analytical chemistry》 |2017年第11期|共7页
  • 作者单位

    Univ Carlos III Madrid Elect Technol Dept C Butarque 15 Madrid 28911 Spain;

    Vienna Univ Technol Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Univ Carlos III Madrid Elect Technol Dept C Butarque 15 Madrid 28911 Spain;

    Vienna Univ Technol Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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