Internal Energy Distribution in MgO(a3Π) Formed From Mg(3P)

Laser Chemistry Pub Date : 1900-01-01 DOI:10.1155/LC.6.15
B. Bourguignon, J. Rostas, G. Taieb, Mohammed-Ali Gargoura, J. Mccombie
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引用次数: 8

Abstract

The internal state distribution of MgO(a3Π) formed from Mg(3P) + O2 and N2O reactions was determined from a reanalysis of the laser induced fluorescence spectra of the d3Δ - a3Π system previously published by Dagdigian. The MgO(a3Π) state formed in the reaction with O2 has a quasi-Boltzmann distribution. In the N2O reaction the rotational excitation is much greater and the vibrational population distribution is inverted with a maximum at v = 2 - 3. The a3Π rovibrational population distributions are compared with those of the X1∑+ ground state. The dynamics of these reactions are discussed on the basis of earlier ab-initio calculations and experimental data.
由Mg(3P)生成的MgO(a3Π)的内能分布
通过对Dagdigian先前发表的d3Δ - a3Π体系激光诱导荧光光谱的再分析,确定了Mg(3P) + O2和N2O反应生成的MgO(a3Π)的内态分布。与O2反应形成的MgO(a3Π)态具有准玻尔兹曼分布。在N2O反应中,转动激发更大,振动居数分布倒转,在v = 2 - 3处达到最大值。并与X1∑+基态的a3Π转振居群分布进行了比较。这些反应的动力学在先前的从头计算和实验数据的基础上进行了讨论。
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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