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多端口石墨烯系统中的非局域电阻
引用本文:王孜博,江华,谢心澄.多端口石墨烯系统中的非局域电阻[J].物理学报,2017,66(21):217201-217201.
作者姓名:王孜博  江华  谢心澄
作者单位:1. 中国工程物理研究院 微系统与太赫兹研究中心, 成都 610200; 2. 中国工程物理研究院 电子工程研究所, 绵阳 621999; 3. 苏州大学物理与光电能源学部, 苏州 215006; 4. 苏州大学高等研究院, 苏州 215006; 5. 北京大学物理学院 量子材料科学中心, 北京 100871; 6. 量子物质协同创新中心, 北京 100871
基金项目:国家重点基础研究发展计划(批准号:2015CB921102,2014CB920901)、国家自然科学基金(批准号:11704348,11374219,11534001,11404300)和科学挑战计划(批准号:TZ2016003-1)资助的课题.
摘    要:非局域测量方法由于其能够间接探测某些难以直接俘获的非平庸物理机理,近年来已逐渐成为凝聚态物理的研究热点之一.最近的实验在H形多端口石墨烯样品中发现了巨大的非局域电阻信号.在排除了经典欧姆、边缘态等可能的输运形式后,人们倾向于认为这类非局域电阻是由多端石墨烯系统中存在的自旋霍尔效益或谷霍尔效应所导致.借助于非平衡格林函数输运计算,目前的理论可以在同样的多端石墨烯体系中得到部分与实验符合较好的数值模拟结果.针对实验中发现的某些难以理解的、甚至与经典理论相矛盾的非局域电阻性质,例如非局域电阻相比局域电阻在偏离电中性点时的迅速衰减、出现在能隙中的非局域电阻峰值等,目前的理论研究取得了一定的进展,但对这些奇异现象的理解仍存在较大的争议.本综述详细回顾了多端口石墨烯体系中非局域电阻的相关实验,并针对性地介绍与之配套的理论进展及对未来研究的展望.

关 键 词:非局域电阻  石墨烯  自旋霍尔效应  谷霍尔效应
收稿时间:2017-09-21

Nonlocal resistance in multi-terminal graphene system
Wang Zi-Bo,Jiang Hua,Xie Xin-Cheng.Nonlocal resistance in multi-terminal graphene system[J].Acta Physica Sinica,2017,66(21):217201-217201.
Authors:Wang Zi-Bo  Jiang Hua  Xie Xin-Cheng
Abstract:Since the nonlocal measurement is helpful in discovering nontrivial physics that is too difficult to detect directly, the nonlocal measurement has now become one of the research focuses in condensed matter physics. Recent experiments find the signal of the giant nonlocal resistance in an H-shaped multi-terminal graphene system. After excluding other possible transport mechanisms, such as the classic Ohmic diffusion and the edge states, researchers tend to believe that the nonlocal resistance signal originates from the spin/valley Hall effect existing in graphene sample. Based on the Landauer-Buttiker formula, the numerical results make a relatively perfect match with the experimental data in the same multi-terminal graphene system. However, though the theoretic research has made certain progress in explaining the existence of the nonlocal resistance, it is still difficult to understand some exotic behaviors of the nonlocal resistance, which exhibits properties even contradictory to the known classical theories. For instance, the nonlocal resistance decreases to zero much more rapidly than the local one, and the giant peak of the nonlocal resistance appears inside the energy gap of the graphene. In this review, the experiments focusing on the nonlocal resistance in multi-terminal graphene system are carefully reviewed. Besides, this review also shows the associated theoretic studies, and an overlook of the future study is also provided.
Keywords:nonlocal resistance  graphene  spin Hall effect  valley Hall effect
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