Davis C C, Petuchowski S J
Appl Opt. 1981 Jul 15;20(14):2539-54. doi: 10.1364/AO.20.002539.
The theory underlying the use of the phase fluctuation optical heterodyne (PFLOH) technique in studies of molecular relaxation, thermal conduction, and extremely weak absorptions in the gas phase is presented. Several new solutions to the heat conduction equation, with and without mass diffusion, which are appropriate to pulsed, cw, and modulated-cw laser modulation of weakly absorbing gases, are presented. Experiments employing pulsed and modulated-cw excitation have borne out the essential predictions of the theory. PFLOH systems for use in a trace detection application have been built with a demonstrated sensitivity, in terms of measurable absorption by the trace material, below 10(-10) cm(-1).
本文介绍了相位涨落光学外差(PFLOH)技术在分子弛豫、热传导和气相中极弱吸收研究中的应用理论。给出了几个热传导方程的新解,包括有质量扩散和无质量扩散的情况,这些解适用于对弱吸收气体的脉冲、连续波和调制连续波激光调制。采用脉冲和调制连续波激发的实验证实了该理论的基本预测。已构建了用于痕量检测应用的PFLOH系统,就痕量物质的可测量吸收而言,其灵敏度已证明低于10^(-10) cm^(-1)。