论文标题

沮丧的环模型的绝热量子退火

Diabatic Quantum Annealing for the Frustrated Ring Model

论文作者

Côté, Jeremy, Sauvage, Frédéric, Larocca, Martín, Jonsson, Matías, Cincio, Lukasz, Albash, Tameem

论文摘要

量子退火是一种连续的时间启发式量子算法,用于解决或大致解决经典优化问题。该算法使用时间表在具有易于预处理状态的驾驶员哈密顿量和哈密顿式问题的问题之间进行插值,其基态将解决方案编码用于优化问题。标准实施依赖于绝热的进化:将系统保持在瞬时基础状态,并以高可能性,并且需要时间尺度与瞬时地面和激发状态之间的最小能量差异成反比。但是,绝热的演变可能导致进化时间,即使对于计算简单的问题,也会随着系统大小而成倍的扩展。在这里,我们研究了具有优化退火计划的非绝热演变是否可以绕过这种指数放缓,因为一个称为“沮丧的环模型”的问题类别。为了充分优化的退火时间表和最多39吨的系统尺寸,我们提供了数值证据,表明我们可以避免呈指数速度的放缓。我们的工作突出了高度控制的量子退火的潜力,即与量子退火的标准实施相关的瓶颈避免了瓶颈。

Quantum annealing is a continuous-time heuristic quantum algorithm for solving or approximately solving classical optimization problems. The algorithm uses a schedule to interpolate between a driver Hamiltonian with an easy-to-prepare ground state and a problem Hamiltonian whose ground state encodes solutions to an optimization problem. The standard implementation relies on the evolution being adiabatic: keeping the system in the instantaneous ground state with high probability and requiring a time scale inversely related to the minimum energy gap between the instantaneous ground and excited states. However, adiabatic evolution can lead to evolution times that scale exponentially with the system size, even for computationally simple problems. Here, we study whether non-adiabatic evolutions with optimized annealing schedules can bypass this exponential slowdown for one such class of problems called the frustrated ring model. For sufficiently optimized annealing schedules and system sizes of up to 39 qubits, we provide numerical evidence that we can avoid the exponential slowdown. Our work highlights the potential of highly-controllable quantum annealing to circumvent bottlenecks associated with the standard implementation of quantum annealing.

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