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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Benchmark of Ab Initio Bethe-Salpeter Equation Approach with Numeric Atom-Centered Orbitals
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APS -APS March Meeting 2017 - Event - Benchmark of Ab Initio Bethe-Salpeter Equation Approach with Numeric Atom-Centered Orbitals

机译:APS -APS 2017年3月会议-活动-具有数字原子中心轨道的从头算起Bethe-Salpeter方程方法的基准

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The Bethe-Salpeter equation (BSE) approach based on the GW approximation has been shown to be successful for optical spectra prediction of solids and recently also for small molecules. We here present an all-electron implementation of the BSE using numeric atom-centered orbital (NAO) basis sets. In this work, we present benchmark of BSE implemented in FHI-aims for low-lying excitation energies for a set of small organic molecules, the well-known Thiel's set. The difference between our implementation (using an analytic continuation of the GW self-energy on the real axis) and the results generated by a fully frequency dependent GW treatment on the real axis is on the order of $sim$0.07 eV for the benchmark molecular set. We study the convergence behavior to the complete basis set limit for excitation spectra, using a group of valence correlation consistent NAO basis sets (NAO-VCC-nZ), as well as for standard NAO basis sets for ground state DFT with extended augmentation functions (NAO+aug). The BSE results and convergence behavior are compared to linear-response time-dependent DFT, where excellent numerical convergence is shown for NAO+aug basis sets.
机译:基于GW近似的Bethe-Salpeter方程(BSE)方法已被证明对于固体的光谱预测是成功的,最近对于小分子也是如此。我们在这里介绍了使用数字原子中心轨道(NAO)基集的BSE的全电子实现。在这项工作中,我们将介绍在FHI-Ams中实施的BSE基准,该基准用于一组小的有机分子(即著名的Thiel装置)的低层激发能。我们的实现(在实轴上使用GW自能的解析连续性)与在实轴上完全依赖于频率的GW处理产生的结果之间的差异,对于基准分子集,约为sim $ 0.07 eV 。我们使用一组价相关一致的NAO基集(NAO-VCC-nZ)以及具有扩展增强功能的基态DFT的标准NAO基集,研究了激发光谱在整个基集极限处的收敛行为。 NAO + aug)。将BSE结果和收敛行为与线性响应时间相关的DFT进行比较,其中显示了NAO + aug基集的出色数值收敛。

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