Accelerating variational quantum eigensolver convergence using parameter transfer

IF 2.9 Q3 CHEMISTRY, PHYSICAL
Mårten Skogh, Oskar Leinonen, P. Lolur, M. Rahm
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引用次数: 2

Abstract

One impediment to the useful application of variational quantum algorithms in quantum chemistry is slow convergence with large numbers of classical optimization parameters. In this work, we evaluate a quantum computational warm-start approach for potential energy surface calculations. Our approach, which is inspired by conventional computational methods, is evaluated using simulations of the variational quantum eigensolver. Significant speedup is demonstrated relative to calculations that rely on a Hartree–Fock initial state, both for ideal and sampled simulations. The general approach of transferring parameters between similar problems is promising for accelerating current and near-term quantum chemistry calculations on quantum hardware, and is likely applicable beyond the tested algorithm and use case.
利用参数传递加速变分量子特征求解器收敛
变分量子算法在量子化学中有效应用的一个障碍是其收敛速度慢,经典优化参数太多。在这项工作中,我们评估了用于势能表面计算的量子计算热启动方法。我们的方法受到传统计算方法的启发,使用变分量子特征求解器的模拟进行评估。对于理想和采样模拟,相对于依赖Hartree-Fock初始状态的计算,证明了显著的加速。在类似问题之间传递参数的一般方法有望在量子硬件上加速当前和近期的量子化学计算,并且可能适用于已测试的算法和用例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
11.50%
发文量
46
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