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Relativistic four-component calculations of indirect nuclear spin-spin couplings with efficient evaluation of the exchange-correlation response kernel

机译:间接核自旋-自旋偶合的相对论四分量计算以及交换相关响应核的有效评估

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In this work, we report on the development and implementation of a new scheme for efficient calculation of indirect nuclear spin-spin couplings in the framework of four-component matrix Dirac-Kohn-Sham approach termed matrix Dirac-Kohn-Sham restricted magnetic balance resolution of identity for J and K, which takes advantage of the previous restricted magnetic balance formalism and the density fitting approach for the rapid evaluation of density functional theory exchange-correlation response kernels. The new approach is aimed to speedup the bottleneck in the solution of the coupled perturbed equations: evaluation of the matrix elements of the kernel of the exchange-correlation potential. The performance of the new scheme has been tested on a representative set of indirect nuclear spin-spin couplings. The obtained results have been compared with the corresponding results of the reference method with traditional evaluation of the exchange-correlation kernel, i. e., without employing the fitted electron densities. Overall good agreement between both methods was observed, though the new approach tends to give values by about 4%-5% higher than the reference method. On the average, the solution of the coupled perturbed equations with the new scheme is about 8.5 times faster compared to the reference method. (C) 2015 AIP Publishing LLC.
机译:在这项工作中,我们报告了在四分量矩阵Dirac-Kohn-Sham方法框架内有效计算间接核自旋-自旋耦合的新方案的开发和实施,该方法称为矩阵Dirac-Kohn-Sham受限磁平衡分辨率J和K的同一性,它利用了以前的受限磁平衡形式和密度拟合方法来快速评估密度泛函理论交换相关响应核。该新方法旨在加快耦合摄动方程解的瓶颈:评估交换相关势核的矩阵元素。新方案的性能已在一组代表性的间接核自旋-自旋偶合中进行了测试。将获得的结果与参考方法的相应结果进行了比较,并将其与交换相关内核的传统评估进行比较。例如,不采用适合的电子密度。观察到两种方法之间的总体良好一致性,尽管新方法倾向于提供比参考方法高约4%-5%的值。平均而言,采用新方案的耦合摄动方程组的求解速度比参考方法快约8.5倍。 (C)2015 AIP Publishing LLC。

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