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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Singlet-triplet gaps in diradicals obtained with diffusion quantum Monte Carlo using a Slater-Jastrow trial wavefunction with a minimum number of determinants
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Singlet-triplet gaps in diradicals obtained with diffusion quantum Monte Carlo using a Slater-Jastrow trial wavefunction with a minimum number of determinants

机译:用扩散量子蒙特卡罗使用壁图 - Jastrow试验挥发功能获得的Diradical中的单态 - 三态间隙,最小数量的决定簇

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摘要

Diradicals are essential species in a wide range of chemical processes, whereas the computational study of their electronic structure often remains a challenge due to near-degeneracy of the frontier molecular orbitals. The fixed-node diffusion quantum Monte Carlo (FN-DMC) method is employed to calculate adiabatic energy gaps of some typical diradicals with the Slater-Jastrow trial wavefunction. The antisymmetrized part of the trial wavefunction is taken to be a linear combination of a minimum number of determinants using RB3LYP orbitals from the closed-shell singlet state or ROB3LYP orbitals from the triplet state. Our results show that using the two-determinant-Jastrow trial wavefunction is necessary to achieve reliable energy differences between closed-shell singlet states. The energy of the triplet state with M-S = 1 is calculated to be lower than that with M-S = 0 with FN-DMC even using trial wavefunctions with spin-pure states as their antisymmetrized parts and this difference is reduced with better orbitals. This indicates that the fixed-node error is smaller for the triplet state with M-S = 1. Adiabatic energy gaps obtained from the present FN-DMC calculations are in reasonable agreement with available experimental values. Compared with results of the high level EOM-SF-CC method, energy gaps of FN-DMC with RB3LYP orbitals are slightly better than those using ROB3LYP orbitals and results of EOM-SF-CCSD. The present FN-DMC calculations using the simplest ansatz for the trial wavefunction can achieve reasonable results for these diradicals and they can readily be applied to large diradicals.
机译:Diradicals是各种化学过程中的必需品,而他们的电子结构的计算研究通常仍然是由于前端分子轨道的接近退化而导致的挑战。使用固定节点扩散量子蒙特卡罗(FN-DMC)方法用斯拉特 - Jastrow试验波功能计算一些典型的Diradical的绝热能量间隙。试验挥发功能的反对称部分被使用来自三重壳状态的闭壳单态或ROB3LYP轨道的RB3LYP轨道的最小数量的决定簇的线性组合。我们的研究结果表明,使用两种决定性的Jastrow试验浪潮是在闭合壳体单态之间实现可靠的能量差异。使用M-S = 1的三​​重态状态的能量计算为低于M-S = 0的M-S = 0,即使使用具有旋转纯状态的试验波函数作为它们的防初级状态,并且这种差异减少了更好的轨道。这表明通过M-S = 1的三​​重态误差较小的固定节点误差较小。从本FN-DMC计算中获得的绝热间隙是合理的与可用实验值的协议。与高水平EOM-SF-CC方法的结果相比,具有RB3LYP轨道的FN-DMC的能量间隙比使用ROB3LYP轨道的能量间隙略好得多,以及EOM-SF-CCSD的结果。使用最简单的ANSATZ的本发明的FN-DMC计算可以为这些Diradicals实现合理的结果,并且它们可以容易地应用于大的Daradicals。

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  • 作者

    Zhou Xiaojun; Wang Fan;

  • 作者单位

    Sichuan Univ Inst Atom &

    Mol Phys Key Lab High Energy Dens Phys &

    Technol Minist Educ Chengdu Sichuan Peoples R China;

    Sichuan Univ Inst Atom &

    Mol Phys Key Lab High Energy Dens Phys &

    Technol Minist Educ Chengdu Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;化学;
  • 关键词

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