首页> 外文期刊>Journal of chemical theory and computation: JCTC >Projection-Based Correlated Wave Function in Density Functional Theory Embedding for Periodic Systems
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Projection-Based Correlated Wave Function in Density Functional Theory Embedding for Periodic Systems

机译:嵌入周期系统密度泛函理论的投影相关波函数

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We present a level shift projection operator based embedding method for systems with periodic boundary conditions where the "active" subsystem can be described using either density functional theory (DFT) or correlated wave function (WF) methods and the "environment" is described using DFT. Our method allows for k-point sampling, is shown to be exactly equal to the canonical DFT solution of the full system under the limit that we use the full system basis to describe each subsystem, and can treat the active subsystem either with periodic boundary conditions in what we term "periodic-in-periodic" embedding or as a molecular cluster in "cluster-in-periodic" embedding. We explore each of these methods and show that cluster WF-in-periodic DFT embedding can accurately calculate the absorption energy of CO on to a Si(100)-2X1 surface.
机译:我们介绍了一种基于级别的移位投影运算符,用于具有周期边界条件的系统的嵌入方法,其中可以使用密度泛函理论(DFT)或相关波函数(WF)方法和“环境”来描述“有源”子系统,并且使用DFT描述“环境” 。 我们的方法允许K点采样,显示完全等于整个系统的规范DFT解决方案,我们使用完整系统来描述每个子系统,并且可以在周期性边界条件下处理活动子系统 在“周期性”嵌入的“周期性”嵌入中的术语“定期”嵌入中。 我们探讨了这些方法中的每一个,并表明集群WF-In-Heriosic DFT嵌入可以准确地计算CO的吸收能量到Si(100)-2x1表面。

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