Schilt Stéphane, Thévenaz Luc, Robert Philippe
Laboratory of Metrology and Photonics, Swiss Federal Institute of Technology, Ecole Polytechnique Federal Lausanne, CH-1015, Lausanne, Switzerland.
Appl Opt. 2003 Nov 20;42(33):6728-38. doi: 10.1364/ao.42.006728.
A theoretical model of wavelength modulation spectroscopy that uses a laser diode on a Lorentzian absorption line is presented. This theory describes the general case of a current-modulated semiconductor laser, for which a combined intensity and frequency modulation with an arbitrary phase shift occurs. On the basis of this model, the effect of several modulation parameters on the detected signals is evaluated. Experimental signals measured on an absorption line of CO2 by use of a 2-microm distributed-feedback laser are also presented and validate this analysis. These experimental results agree with the calculated signals, confirming the relevance of the model.
本文提出了一种基于洛伦兹吸收线的激光二极管的波长调制光谱理论模型。该理论描述了电流调制半导体激光器的一般情况,即会出现强度和频率联合调制且具有任意相移的情况。基于此模型,评估了几个调制参数对检测信号的影响。还给出了使用2微米分布反馈激光器在二氧化碳吸收线上测量的实验信号,并验证了该分析。这些实验结果与计算信号相符,证实了该模型的相关性。