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用于手性光谱学的基于恒等分辨率加速的相对论双和四分量电子动力学方法。

Resolution-of-identity accelerated relativistic two- and four-component electron dynamics approach to chiroptical spectroscopies.

机构信息

Hylleraas Centre for Quantum Molecular Sciences, Department of Chemistry, University of Tromsø-The Arctic University of Norway, Tromsø, Norway.

Institute of Inorganic Chemistry, Slovak Academy of Sciences, Bratislava, Slovakia.

出版信息

J Chem Phys. 2018 Nov 28;149(20):204104. doi: 10.1063/1.5051032.

DOI:10.1063/1.5051032
PMID:30501232
Abstract

We present an implementation and application of electron dynamics based on real-time time-dependent density functional theory (RT-TDDFT) and relativistic 2-component X2C and 4-component Dirac-Coulomb (4c) Hamiltonians to the calculation of electron circular dichroism and optical rotatory dispersion spectra. In addition, the resolution-of-identity approximation for the Coulomb term (RI-J) is introduced into RT-TDDFT and formulated entirely in terms of complex quaternion algebra. The proposed methodology was assessed on the dimethylchalcogenirane series, CHX (X = O, S, Se, Te, Po, Lv), and the spectra obtained by non-relativistic and relativistic methods start to disagree for Se and Te, while dramatic differences are observed for Po and Lv. The X2C approach, even in its simplest one-particle form, reproduces the reference 4c results surprisingly well across the entire series while offering an 8-fold speed-up of the simulations. An overall acceleration of RT-TDDFT by means of X2C and RI-J increases with system size and approaches a factor of almost 25 when compared to the full 4c treatment, without compromising the accuracy of the final spectra. These results suggest that one-particle X2C electron dynamics with RI-J acceleration is an attractive method for the calculation of chiroptical spectra in the valence region.

摘要

我们提出了一种基于实时含时密度泛函理论(RT-TDDFT)和相对论 2 分量 X2C 和 4 分量狄拉克-库仑(4c)哈密顿量的电子动力学实现和应用,用于计算电子圆二色性和旋光色散光谱。此外,还将库仑项的积分分离近似(RI-J)引入 RT-TDDFT,并完全用复四元数代数来表示。该方法在二甲硫杂锗烷系列 CHX(X=O、S、Se、Te、Po、Lv)上进行了评估,非相对论和相对论方法得到的光谱在 Se 和 Te 处开始不一致,而在 Po 和 Lv 处则观察到显著差异。即使在最简单的单粒子形式下,X2C 方法也能令人惊讶地很好地再现整个系列的参考 4c 结果,同时模拟速度提高了 8 倍。通过 X2C 和 RI-J 的 RT-TDDFT 整体加速随着系统规模的增加而增加,与全 4c 处理相比,接近 25 倍的加速,而不会影响最终光谱的准确性。这些结果表明,具有 RI-J 加速的单粒子 X2C 电子动力学是计算价区手性光谱的一种有吸引力的方法。

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