论文标题

将耦合群集ANSATZ应用于热力学极限的固体和表面

Applying the Coupled-Cluster Ansatz to Solids and Surfaces in the Thermodynamic Limit

论文作者

Gruber, Thomas, Liao, Ke, Tsatsoulis, Theodoros, Hummel, Felix, Grüneis, Andreas

论文摘要

现代电子结构理论可以预测并模拟表面科学和固态物理学中的大量现象。为了与实验进行直接比较,必须在热力学限制下进行此类预测,从而大大增加了许多电子波功能理论的计算成本。在这里,我们提出了一种使用“金标准”耦合群集ANSATZ的量子化学量,以实现前所未有的效率来实现固体和表面的热力学极限结果。我们研究了碳钻石和石墨晶体之间的能量差,H-BN上的水吸附能以及NE固体的凝聚力,这表明了固体和表面耦合簇理论的效率和准确性提高。

Modern electronic structure theories can predict and simulate a wealth of phenomena in surface science and solid-state physics. In order to allow for a direct comparison with experiment, such ab initio predictions have to be made in the thermodynamic limit, substantially increasing the computational cost of many-electron wave-function theories. Here, we present a method that achieves thermodynamic limit results for solids and surfaces using the "gold standard" coupled cluster ansatz of quantum chemistry with unprecedented efficiency. We study the energy difference between carbon diamond and graphite crystals, adsorption energies of water on h-BN, as well as the cohesive energy of the Ne solid, demonstrating the increased efficiency and accuracy of coupled cluster theory for solids and surfaces.

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