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Extension of wavelength-modulation spectroscopy to large modulation depth for diode laser absorption measurements in high-pressure gases

机译:将波长调制光谱学扩展到大调制深度,以测量高压气体中的二极管激光吸收

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摘要

Tunable diode laser absorption measurements at high pressures by use of wavelength-modulation spectroscopy (WMS) require large modulation depths for optimum detection of molecular absorption spectra blended by collisional broadening or dense spacing of the rovibrational transitions. Diode lasers have a large and nonlinear intensity modulation when the wavelength is modulated over a large range by injection-current tuning. In addition to this intensity modulation, other laser performance parameters are measured, including the phase shift between the frequency modulation and the intensity modulation. Following published theory, these parameters are incorporated into an improved model of the WMS signal. The influence of these nonideal laser effects is investigated by means of wavelength-scanned WMS measurements as a function of bath gas pressure on rovibrational transitions of water vapor near 1388 nm. Lock-in detection of the magnitude of the 2f signal is performed to remove the dependence on detection phase. We find good agreement between measurements and the improved model developed for the 2f component of the WMS signal. The effects of the nonideal performance parameters of commercial diode lasers are especially important away from the line center of discrete spectra, and these contributions become more pronounced for 2f signals with the large modulation depths needed for WMS at elevated pressures.
机译:通过使用波长调制光谱(WMS)在高压下进行可调谐二极管激光吸收测量需要较大的调制深度,以最佳地检测由分子振动跃迁的碰撞加宽或密集间隔混合而成的分子吸收光谱。当通过注入电流调谐在大范围内调制波长时,二极管激光器具有大而非线性的强度调制。除此强度调制外,还测量了其他激光器性能参数,包括频率调制和强度调制之间的相移。按照公开的理论,将这些参数合并到WMS信号的改进模型中。这些非理想激光效应的影响是通过波长扫描WMS测量方法来研究的,该测量方法是浴气压对1388 nm附近水蒸气旋转跃迁的函数。锁定检测2f信号的幅度是为了消除对检测相位的依赖性。我们发现测量与为WMS信号的2f分量开发的改进模型之间有很好的一致性。商用二极管激光器的非理想性能参数的影响在远离离散光谱的线心处尤为重要,并且对于在高压下WMS所需的大调制深度的2f信号,这些贡献变得更加明显。

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