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首页> 外文期刊>The Journal of Chemical Physics >Eliminating spin-contamination of spin-flip time dependent density functional theory within linear response formalism by the use of zeroth-order mixed- reference (MR) reduced density matrix
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Eliminating spin-contamination of spin-flip time dependent density functional theory within linear response formalism by the use of zeroth-order mixed- reference (MR) reduced density matrix

机译:通过使用零顺序混合(MR)降低密度矩阵,消除了线性响应形式主义内的自旋翻转时间依赖性密度功能理论的旋转污染

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The use of the mixed reference (MR) reduced density matrix, which combines reduced density matrices of the M-S = +1 and -1 triplet-ground states, is proposed in the context of the collinear spin-fliptime-dependent density functional theory (SF-IDDFT) methodology. The time-dependent Kohn-Sham equation with the mixed state is solved by the use of spinor-like open-shell orbitals within the linear response formalism, which enables to generate additional configurations in the realm of TD-DFT. The resulting MR-SF-TDDFT computational scheme has several advantages before the conventional collinear SF-IDDFT. The spin-contamination of the response states of SF-IDDFT is nearly removed. This considerably simplifies the identification of the excited states, especially in the "black-box" type applications, such as the automatic geometry optimization, reaction path following, or molecular dynamics simulations. With the new methodology, the accuracy of the description of the excited states is improved as compared to the collinear SF-IDDFT. Several test examples, which include systems typified by strong non-dynamic correlation, orbital (near) degeneracy, and conical intersections, are given to illustrate the performance of the new method. Published by AIP Publishing.
机译:在共线 - 旋转隐藏依赖性密度函数理论的背景下提出了将MS = +1和-1三重子 - 地面状态的减小密度矩阵结合的混合参考(MR)降低密度矩阵(SF -iddft)方法论。通过使用线性响应形式主义内的旋转型开壳轨道来解决具有混合状态的时间依赖的Kohn-Sham等式,这使得能够在TD-DFT的领域中产生额外的配置。由此产生的MR-SF-TDDFT计算方案在传统的Conlinear SF-IDDFT之前具有几个优点。几乎移除了SF-IDDFT的响应状态的旋转污染。这大大简化了激发态的识别,尤其是在“黑匣子”类型的应用中,例如自动几何优化,反应路径跟随或分子动力学模拟。利用新方法,与共线SF-IDDFT相比,激发态的描述的准确性得到改善。若干测试示例包括由强不动态相关,轨道(接近)退化和锥形交叉点为代表的系统的包含系统,以说明新方法的性能。通过AIP发布发布。

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