物理学报2024,Vol.73Issue(20) :252-256.DOI:10.7498/aps.73.20241029

莫尔超晶格中的分数化拓扑量子态

Fractionalized topological states in moiré superlattices

刘钊
物理学报2024,Vol.73Issue(20) :252-256.DOI:10.7498/aps.73.20241029

莫尔超晶格中的分数化拓扑量子态

Fractionalized topological states in moiré superlattices

刘钊1
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作者信息

  • 1. 浙江大学物理学院,浙江近代物理中心,杭州 310058
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摘要

带有分数化准粒子激发的分数量子霍尔态是一种奇特的强关联拓扑量子物态,自1982年在强磁场二维电子气中被首次观测到以来一直是凝聚态物理重要的前沿方向.去年来,有多个团队在基于过渡金属硫族化合物和石墨烯的莫尔超晶格中观测到了零磁场分数量子霍尔效应,在莫尔超晶格中还发现了分数量子自旋霍尔效应的迹象.这表明莫尔超晶格体系能够有效调控能带及相互作用,是在零磁场条件下实现分数化拓扑量子态的理想平台.本文简要论述了与此相关的研究进展和存在的挑战,并对该领域未来可能的发展方向做出展望.

Abstract

Fractional quantum Hall(FQH)states with fractionalized quasiparticles are exotic topologically ordered quantum states driven by strong correlation between particles.Since the first discovery in 1982 in two-dimensional electron gases penetrated by strong magnetic fields,FQH physics has become an attractive frontier of condensed matter physics.Since last year,FQH transport at zero magnetic field has been observed in moiré superlattices based on transition metal dichalcogenides(TMDs)and graphene.Furthermore,the evidence of fractional quantum spin Hall effect has also been reported in TMD moiré superlattices.These results demonstrate that moiré superlattices are an ideal platform for controlling band structures and interactions to realize fractionalized topological states without the intervention of external magnetic fields.In this paper,we will briefly review the recent research progress on fractionalized topological states in moiré superlattices,summarize the existing challenges,and discuss possible future development of this field.

关键词

莫尔超晶格/分数陈绝缘体/分数量子自旋霍尔效应/非阿贝尔拓扑序

Key words

moiré superlattice/fractional Chern insulators/fractional quantum spin Hall effect/non-Abelian topological order

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基金项目

国家自然科学基金(12374149)

国家自然科学基金(12350403)

出版年

2024
物理学报
中国物理学会,中国科学院物理研究所

物理学报

CSTPCDCSCD北大核心
影响因子:1.038
ISSN:1000-3290
参考文献量58
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