利用量子计算机对量子系统进行化学模拟 - 算法及其实验验证综述

Q3 Medicine
Konrad Wojciechowski, Krzysztof Kurowski, Cezary Mazurek
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引用次数: 0

摘要

利用日益强大的计算能力和机器学习技术进行计算机模拟,可以进行先进的分子建模、分子动力学模拟和分子间相互作用研究。然而,由于生物系统和分子水平化学过程的复杂性,使用经典计算机模型和技术对其进行精确表述多年来一直面临诸多重大限制。量子计算及其与经典高性能超级计算系统的整合是计算科学发展及其在生物化学中潜在应用的一个新的和有前途的方向。本文回应了人们对现有量子计算机在示范应用中的使用日益增长的兴趣。本文旨在概述与量子化学和生物化学界面问题相关的量子算法和模拟开发所涉及的基本概念。此外,文章还介绍了在噪声中量子(NISQ)时代使用最先进的量子计算机进行模拟的基本原理。文章还介绍了经典量子算法变分量子求解器(VQE)对 H2 和 CH+ 分子的实验结果。尽管目前可用的量子计算机存在许多缺陷,但分析的 VQE 算法被证明在使用最小函数基础逼近分子基态方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical simulations of quantum systems using quantum computers - review of algorithms and their experimental verification

Computer simulations using ever-increasing computing power and machine learning techniques allow advanced molecular modelling, molecular dynamics simulations and studies of intermolecular interactions. However, due to the complexity of biological systems and chemical processes at the molecular level, their accurate representation using classical computer models and techniques has faced a number of significant limitations for many years. A new and promising direction for the development of computational science and its potential applications in biochemistry is quantum computing and its integration with classical high-performance supercomputing systems. This article responds to the growing interest in the use of available quantum computers in exemplary applications. In this paper, we aim to provide an overview of the basic notions involved in the development of quantum algorithms and simulations related to issues at the interface of quantum chemistry and biochemistry. In addition, the article introduces the basic principles of performing simulations using the state-of-the-art quantum computers in the era of Noisy Intermediate-Scale Quantum (NISQ). Experimental results of the classical-quantum algorithm Variational Quantum Eigensolver (VQE) for example molecules H2 and CH+ are also presented. Despite the many shortcomings of currently available quantum computers, the analysed VQE algorithm proved to be effective in approximating the ground state of molecules using a minimal functional basis.

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来源期刊
Postepy biochemii
Postepy biochemii Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
36
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