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基于电子-原子核量子动力学计算的分子结构优化

Molecular Structure Optimization Based on Electrons-Nuclei Quantum Dynamics Computation.

作者信息

Hirai Hirotoshi, Horiba Takahiro, Shirai Soichi, Kanno Keita, Omiya Keita, Nakagawa Yuya O, Koh Sho

机构信息

Toyota Central R&D Laboratories., Inc., 41-1, Yokomichi, Nagakute, Aichi 480-1192, Japan.

QunaSys Inc., Aqua Hakusan Building 9F, 1-13-7 Hakusan, Bunkyo, Tokyo 113-0001, Japan.

出版信息

ACS Omega. 2022 Jun 2;7(23):19784-19793. doi: 10.1021/acsomega.2c01546. eCollection 2022 Jun 14.

Abstract

A new concept of the molecular structure optimization method based on quantum dynamics computations is presented. Nuclei are treated as quantum mechanical particles, as are electrons, and the many-body wave function of the system is optimized by the imaginary time evolution method. The numerical demonstrations with a two-dimensional H system and a H-C-N system exemplify two possible advantages of our proposed method: (1) the optimized nuclear positions can be specified with a small number of observations (quantum measurements) and (2) the global minimum structure of nuclei can be obtained without starting from any sophisticated initial structure and getting stuck in the local minima. This method is considered to be suitable for quantum computers, the development of which will realize its application as a powerful method.

摘要

提出了一种基于量子动力学计算的分子结构优化方法的新概念。原子核与电子一样被视为量子力学粒子,系统的多体波函数通过虚时演化方法进行优化。对二维H系统和H-C-N系统的数值演示例证了我们所提出方法的两个可能优点:(1)可以通过少量观测(量子测量)确定优化后的核位置;(2)无需从任何复杂的初始结构开始且不会陷入局部最小值,就能获得原子核的全局最小结构。该方法被认为适用于量子计算机,量子计算机的发展将实现其作为一种强大方法的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eafb/9202041/4a325643bff0/ao2c01546_0001.jpg

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