首页> 外文期刊>The Journal of Chemical Physics >Iterative diagonalization of the non-Hermitian transcorrelated Hamiltonian using a plane-wave basis set: Application to sp-electron systems with deep core states
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Iterative diagonalization of the non-Hermitian transcorrelated Hamiltonian using a plane-wave basis set: Application to sp-electron systems with deep core states

机译:使用平面波基集的非Hermitian互相关哈密顿量的迭代对角化:在具有深核态的sp电子系统中的应用

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摘要

We develop an iterative diagonalization scheme in solving a one-body self-consistent-field equation in the transcorrelated (TC) method using a plane-wave basis set. Non-Hermiticity in the TC method is well handled with a block-Davidson algorithm. We verify that the required computational cost is efficiently reduced by our algorithm. In addition, we apply our plane-wave-basis TC calculation to some simple sp-electron systems with deep core states to elucidate an impact of the pseudopotential approximation to the calculated band structures. We find that a position of the deep valence bands is improved by an explicit inclusion of core states, but an overall band structure is consistent with a regular setup that includes core states into the pseudopotentials. This study offers an important understanding for the future application of the TC method to strongly correlated solids. (C) 2016 AIP Publishing LLC.
机译:我们开发了一种迭代对角化方案,用于使用平面波基集在互相关(TC)方法中求解一个单身自洽场方程。 TC方法中的非隐性可以通过块Davidson算法很好地处理。我们验证了我们的算法有效地减少了所需的计算成本。此外,我们将平面波基TC计算应用于一些具有深核态的简单sp电子系统,以阐明拟势近似对计算的能带结构的影响。我们发现,通过显式包含核心态可以改善深价带的位置,但总体能带结构与将核心态包括到伪势中的常规设置是一致的。这项研究为TC方法在强相关固体中的未来应用提供了重要的理解。 (C)2016 AIP出版有限责任公司。

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