...
首页> 外文期刊>The Journal of Chemical Physics >The spectroscopy of AgF:CASSCF+CASPT2 calculations on the lowest ~3sum~+ ~1sum~+,~3II,~1II,~#DELTA#,and ~1#DELTA# excited states
【24h】

The spectroscopy of AgF:CASSCF+CASPT2 calculations on the lowest ~3sum~+ ~1sum~+,~3II,~1II,~#DELTA#,and ~1#DELTA# excited states

机译:AgF:CASSCF + CASPT2的光谱在最低〜3sum〜+〜1sum〜+,〜3II,〜1II,〜#DELTA#和〜1#DELTA#激发态下计算

获取原文
获取原文并翻译 | 示例
           

摘要

The spectroscopic properties of the three lowest-lying (X,2 and 3) ~ ~ the first ~ ~ the two lowest-lying (1 and 2)~H, the first ‘H, and the ~“A states of the AgF molecule have been studied through extensive CASSCF (complete active space self-consistent field) ±CASPT2 (complete active space second-order perturbational) calculations, using a 19-active-electron relativistic effective core potential for Ag and large Gaussian basis sets for both atoms. Strong mixtures of the Ag~(4d95s’)F72s22p6) ionic and Ag(4d95s2)F(2s22p5) or Ag(4d’05s’)F(2s22p5) neutral configurations were found for the ~ 2 ‘~j, and 1 ‘ll states between 4.0 and 4.4 a.u., while for the higher lying states no evident neutral-ionic crossings were found. This leads to curves that present local maxima at 4.3 a.u. for the 2 ~ + and ~ + states as well as for the I ~FI state at 4.0 a.u. The 2 3H excited state shows the lowest ionic character of all the states. The calculated spectroscopic constants for all the studied states are reported and found in good accordance with available experimental data. The question of the nature of the electronic parent state of the observed BO + state, responsible for the most intense transition and which is the shortest lived excited state of AgF, is thoroughly addressed in the light of the present results. They clearly indicate that the BO + state is not correlated with the Rydberg Ag~(4d95p’) +F72s22p6) ionic structure, as previously proposed [J. Chem. Phys. 102, 4482 (1995)]. Since the 2 ‘~‘ state has been shown to be the AS~ electronic parent state of the fine-structure AG + state (these results confirm this idea), and given the difference between the calculated Te (1513 cm~’) of the 2 ‘~‘ and 1 3fl states, these calculations point to this latter state as the AS~ parent of the experimental BO + state. At this level of the next lAghcr lying stare that could contribute (3 ‘~ 1 through spin—orbit couplings to this BO + state lies more than 8000 cm’ away. This, however, is not consistent with the accurately measured radiative lifetimes of 7.1 1~ts (A’fll), 9.1 ~ts (afli), 240 ns (A0~), 21 ns (BO ~) for the four observed excited states, which seem to indicate that the two fl 0 + excited states are of singlet character. Therefore, only a theoretical study including a substantially more accurate and complete account of the electronic ± spin—orbit interactions will yield a reliable answer to this complex problem in the spectroscopy of AgF.
机译:AgF分子的最低三个位置(X,2和3)~~第一个~~两个最低位置(1和2)〜H,第一个'H和〜“ A的光谱性质通过大量的CASSCF(完全活动空间自洽场)±CASPT2(完全活动空间二阶微扰)计算,使用了Ag的19个活泼电子相对论有效核电势和两个原子的大高斯基集,对它们进行了研究。发现Ag〜(4d95s')F72s22p6)离子和Ag(4d95s2)F(2s22p5)或Ag(4d'05s')F(2s22p5)中性构型的强混合物在4.0至4.4 au之间的状态,而对于较高的躺卧状态,没有发现明显的中性离子交叉。这导致曲线在4.3 a.u处呈现局部最大值。对于2〜+和〜+状态以及4.0 a.u的I〜FI状态。 2 3H激发态显示出所有态中最低的离子特性。报告并计算了所有研究状态的光谱常数,均与现有实验数据相符。鉴于目前的结果,已彻底解决了观察到的BO +状态的电子母体状态的性质问题,该状态负责最剧烈的跃迁,并且是AgF寿命最短的激发态。他们清楚地表明,BO +状态与Rydberg Ag〜(4d95p’)+ F72s22p6)离子结构无关,如先前所建议的[J.化学物理102,4482(1995)]。由于2'〜'状态已显示为精细结构AG +状态的AS_电子母体状态(这些结果证实了这一想法),并给出了计算得出的Te的差(1513 cm〜')。在2个“〜”状态和1个3fl状态下,这些计算将后者作为实验BO +状态的AS_父级。在下一个可能出现的lAghcr凝视的水平上,(距该BO +状态的自旋-轨道耦合3'〜1位于8000 cm'以上。但这与7.1的精确测量辐射寿命不一致)观察到的四个激发态为1〜ts(A'fll),9.1〜ts(afli),240 ns(A0〜),21 ns(BO〜),这似乎表明两个fl 0 +激发态为因此,只有理论上的研究包括对电子±自旋-轨道相互作用的实质性更准确和完整的描述,才能对AgF光谱中的这一复杂问题提供可靠的答案。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号