氢分子的电子结构:经典和量子计算的教程练习。

IF 4.3 Q2 CHEMISTRY, PHYSICAL
ACS Physical Chemistry Au Pub Date : 2025-07-24 eCollection Date: 2025-09-24 DOI:10.1021/acsphyschemau.5c00030
Vincent Graves, Christoph Sünderhauf, Nick S Blunt, Róbert Izsák, Milán Szőri
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引用次数: 0

摘要

在这篇教育论文中,我们将讨论在经典和量子计算机上对氢分子的计算。在前一种情况下,我们将讨论分子积分的计算,然后可以用它来计算Hartree-Fock能级的势能曲线,并通过在最小基中获得所有状态的精确结果来纠正它们。自旋对称的一些方面也将被讨论。在量子计算的情况下,我们将从二次量子化的哈密顿和量子位映射开始。然后,我们提供了使用两种不同算法的量子相位估计电路:Trotterization和qubitization。最后简要讨论了量子纠错的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Electronic Structure of the Hydrogen Molecule: A Tutorial Exercise in Classical and Quantum Computation.

The Electronic Structure of the Hydrogen Molecule: A Tutorial Exercise in Classical and Quantum Computation.

The Electronic Structure of the Hydrogen Molecule: A Tutorial Exercise in Classical and Quantum Computation.

The Electronic Structure of the Hydrogen Molecule: A Tutorial Exercise in Classical and Quantum Computation.

In this educational paper, we will discuss calculations on the hydrogen molecule on both classical and quantum computers. In the former case, we will discuss the calculation of molecular integrals that can then be used to calculate potential energy curves at the Hartree-Fock level and to correct them by obtaining the exact results for all states in the minimal basis. Some aspects of spin-symmetry will also be discussed. In the case of quantum computing, we will start out from the second-quantized Hamiltonian and qubit mappings. We then provide circuits for quantum phase estimation using two different algorithms: Trotterization and qubitization. Finally, the significance of quantum error correction will be briefly discussed.

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来源期刊
CiteScore
3.70
自引率
0.00%
发文量
0
期刊介绍: ACS Physical Chemistry Au is an open access journal which publishes original fundamental and applied research on all aspects of physical chemistry. The journal publishes new and original experimental computational and theoretical research of interest to physical chemists biophysical chemists chemical physicists physicists material scientists and engineers. An essential criterion for acceptance is that the manuscript provides new physical insight or develops new tools and methods of general interest. Some major topical areas include:Molecules Clusters and Aerosols; Biophysics Biomaterials Liquids and Soft Matter; Energy Materials and Catalysis
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