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苯二聚体量子蒙特卡罗方法的化学精度。

Chemical accuracy from quantum Monte Carlo for the benzene dimer.

作者信息

Azadi Sam, Cohen R E

机构信息

Department of Earth Science and Thomas Young Centre, University College London, London WC1E 6BT, United Kingdom.

London Centre for Nanotechnology, University College London, London WC1E 6BT, United Kingdom and Extreme Materials Initiative, Geophysical Laboratory, Carnegie Institution of Washington, Washington, D.C. 20015, USA.

出版信息

J Chem Phys. 2015 Sep 14;143(10):104301. doi: 10.1063/1.4930137.

Abstract

We report an accurate study of interactions between benzene molecules using variational quantum Monte Carlo (VMC) and diffusion quantum Monte Carlo (DMC) methods. We compare these results with density functional theory using different van der Waals functionals. In our quantum Monte Carlo (QMC) calculations, we use accurate correlated trial wave functions including three-body Jastrow factors and backflow transformations. We consider two benzene molecules in the parallel displaced geometry, and find that by highly optimizing the wave function and introducing more dynamical correlation into the wave function, we compute the weak chemical binding energy between aromatic rings accurately. We find optimal VMC and DMC binding energies of -2.3(4) and -2.7(3) kcal/mol, respectively. The best estimate of the coupled-cluster theory through perturbative triplets/complete basis set limit is -2.65(2) kcal/mol [Miliordos et al., J. Phys. Chem. A 118, 7568 (2014)]. Our results indicate that QMC methods give chemical accuracy for weakly bound van der Waals molecular interactions, comparable to results from the best quantum chemistry methods.

摘要

我们报告了一项使用变分量子蒙特卡罗(VMC)和扩散量子蒙特卡罗(DMC)方法对苯分子间相互作用进行的精确研究。我们将这些结果与使用不同范德华泛函的密度泛函理论进行了比较。在我们的量子蒙特卡罗(QMC)计算中,我们使用了精确的关联试探波函数,包括三体雅斯卓夫因子和回流变换。我们考虑了处于平行位移几何构型的两个苯分子,并发现通过高度优化波函数并在波函数中引入更多动态关联,我们能够精确计算芳香环之间的弱化学结合能。我们分别得到了最优的VMC和DMC结合能为-2.3(4)和-2.7(3)千卡/摩尔。通过微扰三重态/完全基组极限得到的耦合簇理论的最佳估计值为-2.65(2)千卡/摩尔[米利奥尔多斯等人,《物理化学杂志A》118, 7568 (2014)]。我们的结果表明,QMC方法对于弱束缚的范德华分子相互作用能够给出化学精度,与最佳量子化学方法的结果相当。

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