Quantum annealing: an overview.

Atanu Rajak, Sei Suzuki, Amit Dutta, Bikas K Chakrabarti
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引用次数: 18

Abstract

In this review, after providing the basic physical concept behind quantum annealing (or adiabatic quantum computation), we present an overview of some recent theoretical as well as experimental developments pointing to the issues which are still debated. With a brief discussion on the fundamental ideas of continuous and discontinuous quantum phase transitions, we discuss the Kibble-Zurek scaling of defect generation following a ramping of a quantum many body system across a quantum critical point. In the process, we discuss associated models, both pure and disordered, and shed light on implementations and some recent applications of the quantum annealing protocols. Furthermore, we discuss the effect of environmental coupling on quantum annealing. Some possible ways to speed up the annealing protocol in closed systems are elaborated upon: we especially focus on the recipes to avoid discontinuous quantum phase transitions occurring in some models where energy gaps vanish exponentially with the system size. This article is part of the theme issue 'Quantum annealing and computation: challenges and perspectives'.

量子退火:概述。
在这篇综述中,在提供了量子退火(或绝热量子计算)背后的基本物理概念之后,我们概述了一些最近的理论和实验发展,指出了仍然存在争议的问题。简要讨论了连续和不连续量子相变的基本思想,讨论了量子多体系统跨越量子临界点后缺陷产生的Kibble-Zurek标度。在此过程中,我们讨论了相关的模型,包括纯模型和无序模型,并阐明了量子退火协议的实现和一些最新应用。进一步讨论了环境耦合对量子退火的影响。本文阐述了在封闭系统中加速退火协议的一些可能的方法:我们特别关注避免在一些模型中发生的不连续量子相变的方法,其中能量间隙随着系统大小呈指数级消失。本文是主题“量子退火与计算:挑战与展望”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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