On the limitations of the chimera graph topology in using analog quantum computers

D. Vert, Renaud Sirdey, Stéphane Louise
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引用次数: 17

Abstract

This paper investigates the possibility of using an analog quantum computer as commercialized by D-Wave to solve large QUBO problems by means of a single invocation of the quantum annealer. Indeed this machine solves a spin glass problem with programmable coefficients but subject to quite strong topology restrictions on the set of non-zero coefficients. Rather than mapping problem variables onto multiple qbits, an approach which requires many invocations of the annealer to solve small size problems, it is tempting to investigate the existence of sparse relaxations compliant with the qbits interconnection topology of the machine, hence solvable in one invocation of the annealing oracle, but still providing good-quality solutions to the original problem. This paper provides an experimental setup which aims to determine whether or not such convenient relaxations do exist or, rather, are easy to find. Our experiments suggest that it is not the case and, therefore, that solving even moderate size arbitrary problems with a single call to a quantum annealer is not possible at least within the constraints of the so-called Chimera topology. We conclude the paper with a number of perspectives that this results imply on the design of heuristics taking profit of a quantum annealing oracle to solve large scale problems.
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论嵌合体图拓扑在模拟量子计算机中的局限性
本文探讨了利用D-Wave商业化的模拟量子计算机通过单次调用量子退火器来解决大型QUBO问题的可能性。事实上,这台机器解决了一个具有可编程系数的自旋玻璃问题,但在非零系数集上受到相当强的拓扑限制。与其将问题变量映射到多个量子比特上,这种方法需要多次调用退火器来解决小尺寸问题,不如研究符合机器量子比特互连拓扑的稀疏松弛的存在性,从而可以在一次调用退火oracle中求解,但仍然为原始问题提供高质量的解。本文提供了一个实验装置,旨在确定这种方便的松弛是否存在,或者更确切地说,是否容易找到。我们的实验表明,情况并非如此,因此,至少在所谓的嵌合体拓扑的限制下,通过单次调用量子退火炉来解决中等大小的任意问题是不可能的。我们总结了这篇论文的一些观点,这些结果暗示了利用量子退火预言来解决大规模问题的启发式设计。
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