...
首页> 外文期刊>The Journal of Chemical Physics >Electronic spectra of DyF studied by four-component relativistic configuration interaction methods
【24h】

Electronic spectra of DyF studied by four-component relativistic configuration interaction methods

机译:四成分相对论构型相互作用方法研究DyF的电子光谱

获取原文
获取原文并翻译 | 示例
           

摘要

The electronic states of the DyF molecule below 3.0 eV are studied using 4-component relativistic CI methods. Spinors generated by the average-of-configuration Hartree-Fock method with the Dirac-Coulomb Hamiltonian were used in CI calculations by the KRCI (Kramers-restricted configuration interaction) program. The CI reference space was generated by distributing 11 electrons among the 11 Kramers pairs composed mainly of Dy [4f], [6s], [6p] atomic spinors, and double excitations are allowed from this space to the virtual molecular spinors. The CI calculations indicate that the ground state has the dominant configuration (4f(9))(6s(2))(Omega = 7.5). Above this ground state, 4 low-lying excited states (Omega = 8.5, 7.5, 7.5, 7.5) are found with dominant configurations (4f(10))(6s). These results are consistent with the experimental studies of McCarthy et al. Above these 5 states, 2 states were observed at T-0 = 2.39 eV, 2.52 eV by McCarthy et al. and were named as [19.3]8.5 and [20.3]8.5. McCarthy et al. proposed that both states have dominant configurations (4f(9))(6s)(6p), but these configurations are not consistent with the large R-e's (similar to 3.9 a.u.) estimated from the observed rotational constants. The present CI calculations provide near-degenerate states of (4f(10))(6p(3/2,1/2)), (4f(10))(6p(3/2,3/2)), and (4f(9))(6s)(6p(3/2,1/2)) at around 3 eV. The former two states have larger R-e (3.88 a.u.) than the third, so that it is reasonable to assign (4f(10))(6p(3/2,1/2)) to [19.3]8.5 and (4f(10))(6p(3/2,3/2)) to [20.3]8.5. (C) 2015 AIP Publishing LLC.
机译:使用4成分相对论CI方法研究DyF分子低于3.0 eV的电子态。由配置平均数的Hartree-Fock方法和Dirac-Coulomb哈密顿量生成的旋转子通过KRCI(Kramers限制配置相互作用)程序用于CI计算。 CI参考空间是通过在11个主要由Dy [4f],[6s],[6p]原子旋轴组成的Kramers对中分配11个电子而生成的,并且允许从该空间向虚拟分子旋轴进行双重激发。 CI计算表明,基态具有主要配置(4f(9))(6s(2))(Ω= 7.5)。在此基态之上,发现了4个处于低位激发态(Omega = 8.5、7.5、7.5、7.5),且具有主导构型(4f(10))(6s)。这些结果与McCarthy等人的实验研究一致。在这5种状态之上,McCarthy等人在T-0 = 2.39 eV,2.52 eV处观察到2种状态。并分别命名为[19.3] 8.5和[20.3] 8.5。 McCarthy等。提出两个状态都具有主要构型(4f(9))(6s)(6p),但是这些构型与根据观测到的旋转常数估计的大R-e(类似于3.9 a.u.)不一致。当前的CI计算提供了(4f(10))(6p(3 / 2,1 / 2)),(4f(10))(6p(3 / 2,3 / 2))和( 4f(9))(6s)(6p(3 / 2,1 / 2))在3 eV左右。前两个州的Re(3.88 au)比第三州大,因此将(4f(10))(6p(3 / 2,1 / 2))分配给[19.3] 8.5和(4f(10) ))(6p(3 / 2,3 / 2))至[20.3] 8.5。 (C)2015 AIP Publishing LLC。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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