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首页> 外文期刊>Chemical science >Density matrix renormalization group pair-density functional theory (DMRG-PDFT): singlet–triplet gaps in polyacenes and polyacetylenes
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Density matrix renormalization group pair-density functional theory (DMRG-PDFT): singlet–triplet gaps in polyacenes and polyacetylenes

机译:密度矩阵重归一化基团对密度泛函理论(DMRG-PDFT):聚苯乙炔和聚乙炔中的单重态-三重态间隙

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摘要

The density matrix renormalization group (DMRG) is a powerful method to treat static correlation. Here we present an inexpensive way to calculate correlation energy starting from a DMRG wave function using pair-density functional theory (PDFT). We applied this new approach, called DMRG-PDFT, to study singlet–triplet gaps in polyacenes and polyacetylenes that require active spaces larger than the feasibility limit of the conventional complete active-space self-consistent field (CASSCF) method. The results match reasonably well with the most reliable literature values and have only a moderate dependence on the compression of the initial DMRG wave function. Furthermore, DMRG-PDFT is significantly less expensive than other commonly applied ways of adding additional correlation to DMRG, such as DMRG followed by multireference perturbation theory or multireference configuration interaction.
机译:密度矩阵重归一化组(DMRG)是一种处理静态相关性的强大方法。在这里,我们提出了一种廉价的方法,可以使用对密度泛函理论(PDFT)从DMRG波函数开始计算相关能量。我们应用了这种称为DMRG-PDFT的新方法来研究在聚苯乙炔和聚乙炔中的单线态-三重态间隙,这些间隙需要的活性空间要大于常规完整活性空间自洽场(CASSCF)方法的可行性极限。结果与最可靠的文献值相当吻合,并且仅对初始DMRG波函数的压缩有中等依赖性。此外,DMRG-PDFT比其他常用的向DMRG添加附加相关性的常用方法便宜得多,例如DMRG,然后是多参考扰动理论或多参考配置交互。

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