...
首页> 外文期刊>The Journal of Chemical Physics >Application of improved virtual orbital based multireference methods to N-2, LiF, and C4H6 systems
【24h】

Application of improved virtual orbital based multireference methods to N-2, LiF, and C4H6 systems

机译:改进的基于虚拟轨道的多参考方法在N-2、LiF和C4H6系统中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

The improved virtual orbital (IVO) complete active space configuration interaction (CASCI) based multiconfigurational quasidegenerate perturbation theory (MCQDPT) and its single-root version (termed as MRMPPT) are applied to assess the efficacy and the reliability of these two methods. Applications involve the ground and/or excited state potential energy curves (PECs) of N-2, LiF, and C4H6 (butadiene) molecules, systems that are sufficiently complex to assess the applicability of these methods. The ionic-neutral curve crossing involving the lowest two (1)Sigma(+) states of LiF molecule is studied using the IVO-MCQDPT method, while its single-root version (IVO-MRMPPT) is employed to study the ground state PEC for isomerization of butadiene and to model the bond dissociation of N-2 molecule. Comparisons with the standard methods (full CI, coupled cluster with singles and doubles, etc.) demonstrate that the IVO-based MRMPPT and MCQDPT approaches provide smooth and reliable PECs for all the systems studied. The IVO-CASCI method is explored to enable geometry optimization for ground state of C4H6 using numerical energy gradients. The ground spectroscopic constants of N-2 and LiF determined using the numerical gradient based IVO-CASCI method are in accord with experiment and with other correlated calculations. As an illustration, we may point out that the maximum deviation from the experiment in our estimated normal mode frequency of LiF is 34 cm(-1), whereas for the bond length, the maximum error is just 0.012 A.
机译:采用改进的虚拟轨道(IVO)完全活动空间构型相互作用(CASCI)多构型四边生成扰动理论(MCQDPT)及其单根版本(称为MRMPPT)来评估这两种方法的有效性和可靠性。应用涉及 N-2、LiF 和 C4H6(丁二烯)分子的基地和/或激发态势能曲线 (PEC),这些系统足够复杂,可以评估这些方法的适用性。采用IVO-MCQDPT方法研究了LiF分子最低两(1)Sigma(+)态的离子-中性曲线交叉,并采用其单根版本(IVO-MRMPPT)研究了丁二烯异构化的基态PEC,并模拟了N-2分子的键解离。与标准方法(全置信区间、具有单倍和双倍的耦合簇等)的比较表明,基于 IVO 的 MRMPPT 和 MCQDPT 方法为所研究的所有系统提供了平滑可靠的 PEC。探索了IVO-CASCI方法,利用数值能量梯度对C4H6的基态进行几何优化。采用基于数值梯度的IVO-CASCI方法测定的N-2和LiF的基谱常数与实验和其他相关计算结果一致。举例来说,我们可以指出,在我们估计的LiF正常模式频率下,与实验的最大偏差为34 cm(-1),而对于键长,最大误差仅为0.012 A。

著录项

相似文献

  • 外文文献
  • 中文文献
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