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单层石墨烯中赝自旋介导的原子尺度涡旋的量子干涉

Quantum Interferences of Pseudospin-Mediated Atomic-Scale Vortices in Monolayer Graphene.

作者信息

Zhang Yu, Su Ying, He Lin

机构信息

Center for Advanced Quantum Studies, Department of Physics, Beijing Normal University, Beijing 100875, China.

School of Information and Electronics, MIIT Key Laboratory for Low-Dimensional Quantum Structure and Devices, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Nano Lett. 2021 Mar 24;21(6):2526-2531. doi: 10.1021/acs.nanolett.0c05066. Epub 2021 Mar 9.

Abstract

A vortex is a universal and significant phenomenon that has been known for centuries. However, creating vortices to the atomic limit has remained elusive. Very recently, it was demonstrated that intervalley scattering induced by the single carbon defect of graphene leads to phase winding over a closed path surrounding the defect. Motivated by this, we demonstrate that the single carbon defects at A and B sublattices of graphene can be regarded as pseudospin-mediated atomic-scale vortices with angular momenta = +2 and -2, respectively. The quantum interference measurements of the vortices indicate that the vortices cancel each other, resulting in zero total angular momentum, in the || = || case, and they show aggregate chirality and angular momenta similar to a single vortex of the majority in the || ≠ || case, where || (||) is the number of vortices with angular momenta = +2 ( = -2).

摘要

涡旋是一种普遍且重要的现象,几个世纪以来一直为人所知。然而,将涡旋创造到原子极限仍然难以实现。最近,有研究表明,石墨烯的单个碳缺陷所诱导的能谷间散射会导致在围绕该缺陷的闭合路径上产生相位缠绕。受此启发,我们证明了石墨烯A和B子晶格上的单个碳缺陷可分别视为具有角动量 = +2和 -2的赝自旋介导的原子尺度涡旋。对这些涡旋的量子干涉测量表明,在 || = || 的情况下,涡旋相互抵消,导致总角动量为零;而在 || ≠ || 的情况下,它们呈现出与多数单个涡旋相似的总手性和角动量,其中 || (||) 是角动量 = +2 ( = -2) 的涡旋数量。

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