首页> 外文期刊>Journal of chemical theory and computation: JCTC >Simple and Efficient Truncation of Virtual Spaces in Embedded Wave Functions via Concentric Localization
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Simple and Efficient Truncation of Virtual Spaces in Embedded Wave Functions via Concentric Localization

机译:通过同心定位简单有效地截断虚拟空间中的虚拟空间

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We present a strategy to generate “concentrically local orbitals” for the purpose of decreasing the computational cost of wave function-in-density functional theory (WF-in-DFT) embedding. The concentric localization is performed for the virtual orbitals by first projecting the virtual space onto atomic orbitals centered on the embedded atoms. Using a one-particle operator, these projected orbitals are then taken as a starting point to iteratively span the virtual space, recursively creating virtual orbital “shells” with consecutively decreasing correlation energy recovery at each iteration. This process can be repeated to convergence, allowing for tunable accuracy. Assessment of the proposed scheme is performed by application to the potential energy diagram of the Menshutkin reaction of chloromethane and ammonia inside a segment of a carbon nanotube and the torsional potential of a simplified version of the retinal chromophore.
机译:我们提出了一种策略来产生“同心本地轨道”,以降低波浪功能型功能理论(WF-IN-DFT)嵌入的计算成本。 通过首先将虚拟空间突出到以嵌入原子为中心的原子轨道来对虚拟轨道执行同心定位。 然后,使用单粒子操作员,然后将这些投影轨道作为起点,以迭代地跨越虚拟空间,递归地创建虚拟轨道“炮弹”,在每次迭代时连续地降低相关能量恢复。 该过程可以重复到收敛,从而允许可调精度。 通过应用于氯甲烷和氨在碳纳米管的区段内的Menshutkin反应的潜在能量图和视网膜发色团的简化版本的扭转电位的应用来进行评估。

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