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Molecular (hyper)polarizabilities computed by pseudospectral methods

机译:通过伪光谱方法计算的分子(超)极化率

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We have developed algorithms based on pseudospectral (PS) ab initio electronic structure methods for solving the first- and second-order Hartree-Fock/Kohn-Sham equations and evaluating molecular polarizabilities and first- and second-order hyperpolarizabilities in the spin-restricted and spin-unrestricted formalisms at the Hartree-Fock (HF) and density functional theory (DFT) levels. We carry out calculations on 50 small molecules to test the accuracy of the PS approach. Our results demonstrate that the molecular polarizability alpha computed by the PS method is essentially identical to the value obtained from conventional methods for both HF and DFT calculations, while the first-order hyperpolarizability beta and second-order hyperpolarizability gamma have mean unsigned percentage differences of 1.26% and 0.62% (HF) and 0.78% and 0.65% (DFT), respectively. We also present CPU timing comparisons between the PS and conventional methods at the 6-31 G(**) level for 14 molecules having 185 to 1185 basis functions. The timing results show that the PS method is 25 (PS-HF) and 13 (PS-DFT) times faster than the conventional method for a system with 500 basis functions. The PS methods are found scale as N-2.70 (PS-HF) and N-2.40 (PS-DFT), while the conventional methods scale as N-2.93 (PRISM-HF) and N-2.87 (PRISM-DFT), where N is the number of basis functions.
机译:我们已经开发了基于伪光谱(Ab initio)电子结构方法的算法,用于求解一阶和二阶Hartree-Fock / Kohn-Sham方程,并评估自旋受限和自旋受限分子的极化率和一阶和二阶超极化率。 Hartree-Fock(HF)和密度泛函理论(DFT)级别的自旋无限制形式主义。我们对50个小分子进行了计算,以测试PS方法的准确性。我们的结果表明,通过PS方法计算的分子极化率α与从常规方法获得的HF和DFT计算值基本相同,而一阶超极化率β和二阶超极化率γ的平均无符号百分比差为1.26。 %和0.62%(HF)和0.78%和0.65%(DFT)。我们还针对6种具有185至1185基本功能的分子,在6-31 G(**)级别上显示了PS和常规方法之间的CPU时序比较。时序结果表明,对于具有500个基函数的系统,PS方法比常规方法快25倍(PS-HF)和13倍(PS-DFT)。 PS方法的标度为N-2.70(PS-HF)和N-2.40(PS-DFT),而常规方法的标度为N-2.93(PRISM-HF)和N-2.87(PRISM-DFT),其中N是基函数的数量。

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