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首页> 外文期刊>Journal of Chemical Physics >Diabatic couplings for charge recombination via Boys localization and spin-flip configuration interaction singles
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Diabatic couplings for charge recombination via Boys localization and spin-flip configuration interaction singles

机译:通过Boys定位和自旋翻转配置相互作用单分子进行的绝热耦合电荷重组

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摘要

We describe a straightforward technique for obtaining diabatic couplings applicable to charge transfer from or charge recombination to the electronic ground state. Our method is nearly black box, requiring minimal chemical intuition from the user, and merges two well-established approaches in electronic structure theory: first, smooth and balanced adiabatic states are generated using spin-flip-configuration interaction singles (SF-CIS) based on a triplet HF state; second, Boys localization is applied to rotate all adiabatic states into charge-localized diabatic states. The method is computationally inexpensive, scaling only with the cost of CIS, and does not require a choice of active space, which is usually required for such intrinsically multiconfigurational problems. Molecular LiF in vacuum and LiF solvated by a single water molecule are examined as model systems. We find nearly smooth diabatic potential energy surfaces and couplings and we find that the Condon approximation is obeyed approximately for this model problem.
机译:我们描述了一种简单的技术,用于获得可用于将电荷从电子基态转移或重组到电子基态的非绝热耦合。我们的方法几乎是黑匣子,需要用户最小的化学直觉,并且合并了电子结构理论中的两种公认的方法:首先,使用基于自旋-翻转-配置相互作用单峰(SF-CIS)生成平滑和平衡的绝热态在三重态HF状态;第二,应用Boys本地化将所有绝热状态旋转为电荷本地化的非绝热状态。该方法在计算上不昂贵,仅按CIS的成本进行缩放,并且不需要选择活动空间,这通常是此类固有的多配置问题所必需的。将真空中的分子LiF和由单个水分子溶剂化的LiF用作模型系统。我们发现了几乎光滑的非绝热势能面和耦合,并且我们发现对于该模型问题近似遵循了Condon近似。

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