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TAO-DFT 虚拟温度简化版

TAO-DFT fictitious temperature made simple.

作者信息

Chen Bo-Jyun, Chai Jeng-Da

机构信息

Department of Physics, National Taiwan University Taipei 10617 Taiwan

Center for Theoretical Physics, Center for Quantum Science and Engineering, National Taiwan University Taipei 10617 Taiwan.

出版信息

RSC Adv. 2022 Apr 22;12(19):12193-12210. doi: 10.1039/d2ra01632j. eCollection 2022 Apr 13.

Abstract

Over the past few years, thermally-assisted-occupation density functional theory (TAO-DFT) [J.-D. Chai, , 2012, , 154104] has been proved to be an efficient electronic structure method for investigating the ground-state properties of large electronic systems with strong static correlation effects. In TAO-DFT, the strength of static correlation in an electronic system at zero temperature is closely related to the so-called fictitious temperature (, the temperature of the corresponding noninteracting reference system). In this work, we propose a simple model to define the optimal system-independent fictitious temperature of a given energy functional in TAO-DFT. Besides, we employ this model to determine the optimal system-independent fictitious temperature of a global hybrid functional in TAO-DFT as a function of the fraction of exact exchange. In addition, we adopt TAO-DFT with various global hybrid functionals and system-independent fictitious temperatures to explore the ground-state properties of several electronic systems with strong static correlation effects, such as the linear acenes and cyclic carbon chains. Furthermore, we discuss the role of exact exchange and an optimal system-independent fictitious temperature in TAO-DFT. Owing to the much reduced self-interaction error, TAO-DFT with exact exchange and an optimal system-independent fictitious temperature can accurately predict the radical character and bond length alternation of cyclic carbon chains (with even number of carbon atoms), which are challenging problems for traditional electronic structure methods.

摘要

在过去几年中,热辅助占据密度泛函理论(TAO-DFT)[J.-D. 柴,,2012,,154104]已被证明是一种用于研究具有强静态相关效应的大型电子系统基态性质的有效电子结构方法。在TAO-DFT中,零温度下电子系统中静态相关的强度与所谓的虚拟温度(,相应非相互作用参考系统的温度)密切相关。在这项工作中,我们提出了一个简单模型来定义TAO-DFT中给定能量泛函的最优系统无关虚拟温度。此外,我们使用这个模型来确定TAO-DFT中全局杂化泛函的最优系统无关虚拟温度作为精确交换分数的函数。另外,我们采用具有各种全局杂化泛函和系统无关虚拟温度的TAO-DFT来探索几个具有强静态相关效应的电子系统的基态性质,如线性并苯和环状碳链。此外,我们讨论了精确交换和最优系统无关虚拟温度在TAO-DFT中的作用。由于自相互作用误差大大降低,具有精确交换和最优系统无关虚拟温度的TAO-DFT可以准确预测环状碳链(碳原子数为偶数)的自由基特征和键长交替,这对传统电子结构方法来说是具有挑战性的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/791e/9026342/e3894fb39509/d2ra01632j-f1.jpg

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