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Quantum vertex model for reversible classical computing

机译:可逆经典计算的量子顶点模型

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摘要

Mappings of classical computation onto statistical mechanics models have led to remarkable successes in addressing some complex computational problems. However, such mappings display thermodynamic phase transitions that may prevent reaching solution even for easy problems known to be solvable in polynomial time. Here we map universal reversible classical computations onto a planar vertex model that exhibits no bulk classical thermodynamic phase transition, independent of the computational circuit. Within our approach the solution of the computation is encoded in the ground state of the vertex model and its complexity is reflected in the dynamics of the relaxation of the system to its ground state. We use thermal annealing with and without ‘learning' to explore typical computational problems. We also construct a mapping of the vertex model into the Chimera architecture of the D-Wave machine, initiating an approach to reversible classical computation based on state-of-the-art implementations of quantum annealing.
机译:经典计算到统计力学模型的映射已在解决一些复杂的计算问题方面取得了巨大的成功。但是,此类映射显示热力学相变,即使已知在多项式时间内可解决的简单问题,也可能无法达到求解。在这里,我们将通用可逆经典计算映射到一个平面顶点模型,该模型不显示任何体积的经典热力学相变,而与计算电路无关。在我们的方法中,计算的解决方案被编码在顶点模型的基态中,其复杂性反映在系统松弛到其基态的动力学中。我们在有或没有“学习”的情况下使用热退火来探索典型的计算问题。我们还构造了一个顶点模型到D-Wave机器的Chimera体系结构的映射,从而基于一种最新的量子退火实现方法,开始了一种可逆经典计算的方法。

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