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Recovery of Absolute Gas Absorption Line Shapes Using Tunable Diode Laser Spectroscopy With Wavelength Modulation—Part I: Theoretical Analysis

机译:使用波长调制的可调谐二极管激光光谱法恢复绝对气体吸收线形—第一部分:理论分析

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摘要

Tunable diode laser spectroscopy is extremely important for gas detection in a wide variety of industrial, safety and environmental monitoring applications. Of particular interest is the development of calibration-free, stand-alone systems and instrumentation which can operate in high-temperature or high-pressure environments (such as in fuel cells, or gas turbine engines) where continuous and simultaneous monitoring of pressure, temperature and concentration of gases may be required. Here, in Part 1 of this two-part paper, we present the full theoretical basis and range of techniques for calibration-free line-shape recovery to allow simultaneous measurements of concentration and pressure/temperature for a wide range of potential applications. Firstly, on the basis of Fourier analysis, we present the general signal components that arise with both intensity and frequency modulation of diode lasers and identify the issues and difficulties associated with accurate line-shape recovery in conventional wavelength modulation spectroscopy (WMS). We then show how line-shape recovery may be effectively performed using first harmonic signals and, by use of a general correction function from Fourier coefficients, we extend the techniques previously reported to include arbitrary large modulation indices, different line-shape profiles and high gas concentration with non-linear absorption. Previous approximate techniques based on Taylor series expansions are included as a special case of the Fourier analysis for low modulation indices. We also show that the signal amplitudes obtained in this way can be comparable to, or even exceed, that of conventional WMS by appropriate choice of the modulation index and frequency.
机译:可调二极管激光光谱仪对于多种工业,安全和环境监测应用中的气体检测极为重要。尤其值得关注的是开发可在高温或高压环境(例如燃料电池或燃气轮机发动机)中连续且同时监控压力,温度的免校准独立系统和仪器的开发。并且可能需要气体浓度。在此由两部分组成的论文的第1部分中,我们介绍了无需校准的线形恢复的全部理论基础和技术范围,以便可以同时测量浓度和压力/温度,从而适用于广泛的潜在应用。首先,在傅立叶分析的基础上,我们介绍了二极管激光器的强度和频率调制同时产生的一般信号分量,并确定了传统波长调制光谱(WMS)中与精确线形恢复相关的问题和困难。然后,我们说明如何使用一次谐波信号有效地进行线形恢复,并通过使用傅立叶系数中的一般校正函数,将先前报道的技术扩展到包括任意大的调制指数,不同的线形轮廓和高气体非线性吸收的浓度。作为低调制指数的傅立叶分析的特例,包括了基于泰勒级数展开式的先前近似技术。我们还表明,通过适当选择调制指数和频率,以这种方式获得的信号幅度可以与传统WMS相当甚至超过。

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