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Solving Quantum Chemistry Problems with a D-Wave Quantum Annealer

机译:用D波量子退火仪解决量子化学问题

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Quantum annealing devices have been subject to various analyses in order to classify their usefulness for practical applications. While it has been successfully proven that such systems can in general be used for solving combinatorial optimization problems, they have not been used to solve chemistry applications. In this paper we apply a mapping, put forward by Xia et al. [25], from a quantum chemistry Hamiltonian to an Ising spin glass formulation and find the ground state energy with a quantum annealer. Additionally we investigate the scaling in terms of needed physical qubits on a quantum annealer with limited connectivity. To the best of our knowledge, this is the first experimental study of quantum chemistry problems on quantum annealing devices. We find that current quantum annealing technologies result in an exponential scaling for such inherently quantum problems and that new couplers are necessary to make quantum annealers attractive for quantum chemistry.
机译:为了对量子退火装置在实际应用中的有用性进行分类,已经对其进行了各种分析。尽管已成功证明此类系统通常可用于解决组合优化问题,但尚未用于解决化学应用。在本文中,我们应用了Xia等人提出的映射。 [25],从量子化学哈密顿量到伊辛自旋玻璃公式,并用量子退火仪找到基态能量。另外,我们在连接性受限的量子退火炉上根据所需物理量子位来研究缩放。据我们所知,这是首次在量子退火装置上进行量子化学问题的实验研究。我们发现,当前的量子退火技术导致此类固有量子问题的指数缩放,并且新的耦合器对于使量子退火器对量子化学具有吸引力是必需的。

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