论文标题

XX - 催化剂对与扰动交叉的量子退火光谱的影响

Effects of XX-catalysts on quantum annealing spectra with perturbative crossings

论文作者

Feinstein, Natasha, Fry-Bouriaux, Louis, Bose, Sougato, Warburton, P. A.

论文摘要

在绝热的量子退火中,要达到给定的地面富度的所需运行时间取决于在退火频谱中地面和第一个激发态之间出现的最小间隙的大小。一般而言,避免级别的交叉处的存在要求将退火时间呈指数增加,而系统大小则对算法的效率和所需的量子轴相干时间产生了后果。一种有希望的途径正在探索更有利的差距缩放,这是特别感兴趣的催化剂形式的非拼写XX耦合的引入是催化剂,这些催化剂利用了有关其构建中优化问题的无障碍信息。在这里,我们显示出XX催化剂对优化问题编码的细微变化的效果的极端敏感性。特别是,我们观察到,在恒定强度下含有单个耦合的靶向催化剂可以显着降低间隙截止,而在避免的水平交叉处,系统大小。但是,对于相同问题的略有不同的编码,这些相同的催化剂会导致退火光谱的差距。为了理解这些封闭差距的起源,我们研究了地面载体的演变如何通过催化剂的存在来改变,并发现基态矢量的负分量是理解间隙光谱响应的关键。我们还考虑了在绝热的量子退火方案中如何以及何时将这些截止间隙用于绝热量子退火的有前途的替代方案,在这种量子中,利用了向较高能级的过渡以减少算法的运行时间。

In adiabatic quantum annealing the required run-time to reach a given ground-state fidelity is dictated by the size of the minimum gap that appears between the ground and first excited state in the annealing spectrum. In general the presence of avoided level crossings demands an exponential increase in the annealing time with the system size which has consequences both for the efficiency of the algorithm and the required qubit coherence times. One promising avenue being explored to produce more favourable gap scaling is the introduction of non-stoquastic XX-couplings in the form of a catalyst - of particular interest are catalysts which utilise accessible information about the optimisation problem in their construction. Here we show extreme sensitivity of the effect of an XX-catalyst to subtle changes in the encoding of the optimisation problem. In particular, we observe that a targeted catalyst containing a single coupling at constant strength can significantly reduce the gap closing with system size at an avoided level crossing. For slightly different encodings of the same problems however, these same catalysts result in closing gaps in the annealing spectrum. To understand the origin of these closing gaps, we study how the evolution of the ground-state vector is altered by the presence of the catalyst and find that the negative components of the ground-state vector are key to understanding the response of the gap spectrum. We also consider how and when these closing gaps could be utilised in diabatic quantum annealing protocols - a promising alternative to adiabatic quantum annealing in which transitions to higher energy levels are exploited to reduce the run time of the algorithm.

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