IR-Luminescence of CF2Cl2 Molecules in Multiple-Photon Excitation With Co2-Laser Radiation

Laser Chemistry Pub Date : 1900-01-01 DOI:10.1155/LC.8.123
A. V. Dem’yanenko, G. A. Polyakov, A. Puretzky
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引用次数: 2

Abstract

We studied the IR luminescence spectra of vibrationally excited CF2Cl2 molecules resulting from excitation of the ν1 (1098 cm−1) and ν8 (922 cm−1) modes with a pulsed CO2 laser. The nonequilibrium spectra obtained under pumping conditions where their equilibrium counterparts coincide (the number of the photons absorbed per molecule being the same) were found to differ considerably. We suppose that this difference is due to different types of vibrational distribution formed as a result of the IR laser pumping. When pumping the ν1 mode, excitation of the R-branch occurs, resulting in the molecules “sticking” on the lower vibrational levels, whereas in the case of the ν8 mode, it is the P-branch that gets excited so that the molecules become easy to raise to high-lying vibrational levels.
co2激光多光子激发下CF2Cl2分子的红外发光研究
用脉冲CO2激光研究了ν1 (1098 cm−1)和ν8 (922 cm−1)模式下振动激发CF2Cl2分子的红外发光光谱。在抽运条件下,当它们的平衡对应物重合时(每个分子吸收的光子数相同),得到的非平衡光谱被发现有很大的不同。我们认为这种差异是由于不同类型的振动分布形成的红外激光泵浦的结果。当抽运ν1模式时,r分支的激发发生,导致分子“粘滞”在较低的振动能级上,而在ν8模式的情况下,是p分支被激发,使分子变得容易上升到高振动能级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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