首页> 外文期刊>Journal of chemical theory and computation: JCTC >Toward Efficient GW Calculations Using Numerical Atomic Orbitals: Benchmarking and Application to Molecular Dynamics Simulations
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Toward Efficient GW Calculations Using Numerical Atomic Orbitals: Benchmarking and Application to Molecular Dynamics Simulations

机译:使用数值原子轨道的高效GW计算:基准和应用于分子动力学模拟

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The use of atomic orbitals in Hedin's GW approximation provides, in principle, an inexpensive alternative to plane-wave basis sets, especially when modeling large molecules. However, benchmarking of the algorithms and basis sets is essential for a careful balance between cost and accuracy. In this paper, we present an implementation of the GW approximation using numerical atomic orbitals and a pseudopotential treatment of core electrons. The combination of a contour deformation technique with a one-shot extraction of quasiparticle energies provides an efficient scheme for many applications. The performance of the implementation with respect to the basis set convergence and the effect of the use of pseudopotentials has been tested for the 117 closed-shell molecules from the G2/97 test set and 24 larger acceptor molecules from another recently proposed test set. Moreover, to demonstrate the potential of our method, we compute the thermally averaged GW density of states of a large photochromic compound by sampling ab initio molecular dynamics trajectories at different temperatures. The computed thermal line widths indicate approximately twice as large electron-phonon couplings with GW than with standard DFT-GGA calculations. This is further confirmed using frozenphonon calculations.
机译:原则上,使用原子轨道在HEDIN的GW近似下提供了廉价的平面波基础集的替代方案,特别是在建模大分子时。然而,算法和基础集的基准对于成本和准确性之间的仔细平衡至关重要。在本文中,我们使用数值原子轨道和核心电子的假软件处理来介绍GW近似的实现。具有单次提取的轮廓变形技术的组合为Quasiplicle Energies提供了许多应用的有效方案。关于基础设定收敛的实施和使用伪能量的使用的性能已经过来自G2 / 97测试组的117个闭合壳分子,以及来自另一个最近提出的测试集的24个较大的受体分子。此外,为了证明我们方法的潜力,我们通过在不同温度下采样AB Initio分子动力学轨迹来计算大型光致变色化合物的状态的热平均GW密度。计算的热线宽度表示大约两倍的电位耦合,具有GW而不是标准DFT-GGA计算。使用冻干计算进一步证实了这一点。

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