3-DIMENSIONAL MODEL FOR CW LASER-INDUCED MODE-MISMATCHED DUAL-BEAM THERMAL LENS SPECTROMETRY AND TIME-RESOLVED MEASUREMENTS OF THIN-FILM SAMPLES

被引:114
作者
SHEN, J
BAESSO, ML
SNOOK, RD
机构
[1] Department of Instrumentation and Analytical Science, UMIST, Manchester M60 1QD
关键词
D O I
10.1063/1.356046
中图分类号
O59 [应用物理学];
学科分类号
摘要
Conventional thermal lens spectrometry theory assumes that the sample is an infinite medium, and only the radial temperature rise and heat flow in the sample are considered. This approach is not suitable for thin-film samples. Considering the axial boundary conditions of the sample, a three-dimensional model for cw laser-induced mode-mismatched thermal lens spectrometry is presented. However, its mathematical expression is not so convenient as that of the conventional theory to deal with the experimental data. The model shows that, besides axial boundary conditions of the sample, the ratio of excitation laser spot size to the sample thickness omega(e)/l is a crucial parameter to minimize the axial heat flow. By choosing small omega(e)/l, it is possible for the conventional theory to describe the development of the thermal lens of a thin sample for a short duration. Experimental proofs for the theoretical prediction are made, and good agreements are achieved.
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页码:3738 / 3748
页数:11
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