论文标题

部分可观测时空混沌系统的无模型预测

Lower Bounds on Quantum Annealing Times

论文作者

García-Pintos, Luis Pedro, Brady, Lucas T., Bringewatt, Jacob, Liu, Yi-Kai

论文摘要

绝热定理为准备目标基态所需的时间提供了足够的条件。尽管可以通过更通用的量子退火协议更快地准备目标状态,但是超越绝热制度的严格结果很少。在这里,我们提供了这样的结果,它在成功执行量子退火所需的时间上得出了下限。界限是由三种玩具模型渐近饱和的,其中已知快速退火时间表:Roland和Cerf非结构化搜索模型,Hamming Spike问题和铁磁P-Spin模型。我们的边界表明这些时间表具有最佳的缩放。我们的结果还表明,快速退火需要能量本征态相干叠加,将量子相干性作为计算资源。

The adiabatic theorem provides sufficient conditions for the time needed to prepare a target ground state. While it is possible to prepare a target state much faster with more general quantum annealing protocols, rigorous results beyond the adiabatic regime are rare. Here, we provide such a result, deriving lower bounds on the time needed to successfully perform quantum annealing. The bounds are asymptotically saturated by three toy models where fast annealing schedules are known: the Roland and Cerf unstructured search model, the Hamming spike problem, and the ferromagnetic p-spin model. Our bounds demonstrate that these schedules have optimal scaling. Our results also show that rapid annealing requires coherent superpositions of energy eigenstates, singling out quantum coherence as a computational resource.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源