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使用Ocean和Mukai求解器对电子结构二次无约束二元优化问题(QUBOs)进行采样。

Sampling electronic structure quadratic unconstrained binary optimization problems (QUBOs) with Ocean and Mukai solvers.

作者信息

Teplukhin Alexander, Kendrick Brian K, Mniszewski Susan M, Tretiak Sergei, Dub Pavel A

机构信息

Theoretical Division (T-1, MS B221), Los Alamos National Laboratory, Los Alamos, New Mexico, United States of America.

Computer, Computational and Statistical Sciences Division (CCS, MS B214), Los Alamos National Laboratory, Los Alamos, New Mexico, United States of America.

出版信息

PLoS One. 2022 Feb 11;17(2):e0263849. doi: 10.1371/journal.pone.0263849. eCollection 2022.

Abstract

The most advanced D-Wave Advantage quantum annealer has 5000+ qubits, however, every qubit is connected to a small number of neighbors. As such, implementation of a fully-connected graph results in an order of magnitude reduction in qubit count. To compensate for the reduced number of qubits, one has to rely on special heuristic software such as qbsolv, the purpose of which is to decompose a large quadratic unconstrained binary optimization (QUBO) problem into smaller pieces that fit onto a quantum annealer. In this work, we compare the performance of the open-source qbsolv which is a part of the D-Wave Ocean tools and a new Mukai QUBO solver from Quantum Computing Inc. (QCI). The comparison is done for solving the electronic structure problem and is implemented in a classical mode (Tabu search techniques). The Quantum Annealer Eigensolver is used to map the electronic structure eigenvalue-eigenvector equation to a QUBO problem, solvable on a D-Wave annealer. We find that the Mukai QUBO solver outperforms the Ocean qbsolv with one to two orders of magnitude more accurate energies for all calculations done in the present work, both the ground and excited state calculations. This work stimulates the further development of software to assist in the utilization of modern quantum annealers.

摘要

最先进的D-Wave Advantage量子退火器拥有5000多个量子比特,然而,每个量子比特仅与少数几个相邻量子比特相连。因此,实现全连接图会导致量子比特数量减少一个数量级。为了弥补量子比特数量的减少,人们不得不依赖特殊的启发式软件,如qbsolv,其目的是将一个大型二次无约束二进制优化(QUBO)问题分解成适合量子退火器的较小问题。在这项工作中,我们比较了作为D-Wave Ocean工具一部分的开源qbsolv和量子计算公司(QCI)新推出的Mukai QUBO求解器的性能。比较是在求解电子结构问题时进行的,并以经典模式(禁忌搜索技术)实现。量子退火器本征解算器用于将电子结构特征值-特征向量方程映射为一个可在D-Wave退火器上求解的QUBO问题。我们发现,对于本工作中进行的所有计算,包括基态和激发态计算,Mukai QUBO求解器的性能均优于Ocean qbsolv,其能量精度高出一到两个数量级。这项工作推动了有助于利用现代量子退火器的软件的进一步发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cce/8836298/930f2feea574/pone.0263849.g001.jpg

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