Chakraborty Arup Lal, Ruxton Keith, Johnstone Walter
Department of Electronic and Electrical Engineering, University of Strathclyde, 204 George Street, Glasgow G1 1XW, United Kingdom.
Opt Express. 2010 Jan 4;18(1):267-80. doi: 10.1364/OE.18.000267.
Recently a technique to optically eliminate the background residual amplitude modulation in 1f wavelength modulation spectroscopy was demonstrated, where perfect elimination throughout the scan range was not achieved due to the wavelength-dependence of couplers and that of the laser intensity modulation. This paper theoretically analyzes the technique and experimentally demonstrates that the elimination can be perfect for one of three possible experimental configurations, making this important for potential applications with some recently-developed laser sources. For the other configurations a non-zero background slope is predicted, experimentally verified, and the anomalous nature of signals is thereby explained. A common signal normalization method is devised that is independent of the signal slope, a fact that is important for industrial deployment of such systems.
最近展示了一种在1f波长调制光谱中通过光学方法消除背景残余幅度调制的技术,由于耦合器的波长依赖性和激光强度调制的波长依赖性,在整个扫描范围内未实现完美消除。本文对该技术进行了理论分析,并通过实验证明,对于三种可能的实验配置之一,消除可以是完美的,这对于一些最近开发的激光源的潜在应用很重要。对于其他配置,预测了非零背景斜率,并通过实验进行了验证,从而解释了信号的异常性质。设计了一种与信号斜率无关的通用信号归一化方法,这一事实对于此类系统的工业应用很重要。