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Observation of Hofstadter butterfly and valley Hall effect in hBN/graphene/hBN heterostructures

机译:HBN /石墨烯/ HBN异质结构中HOFStadter蝴蝶和谷霍尔效应的观察

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Recently, heterostructures of 2-D materials have attracted great interests because they form superlattices which allow band engineering as well as use of multiple degenerate degrees of freedom. We have fabricated hexag- onal boron nitride (hBN)/graphene/hBN superlattices with one-dimensional edge contacts as well as a Hall-bar geometry. Clear conductance oscillations in magnetic fields have been observed, originating from the Hofstadter's butterfly which indicates the good alignment of graphene and hBN crystal orientation. In addition, giant non-local resistance near secondary Dirac point originated by the valley Hall effect has been observed in zero magnetic field. Our experimental results indicate the high quality samples of graphene superlattices with quasi-ballistic transport regime are realized.
机译:最近,2-D材料的异性结构吸引了极大的兴趣,因为它们形成了允许带工程的超级图案以及使用多个退化程度的自由度。我们用一维边缘触点以及霍尔杆几何形状制造了六烷基氮化硼(HBN)/石墨烯/ HBN超晶片。已经观察到磁场中的清晰电导振荡,源自Hofstadter的蝴蝶,其表示石墨烯和HBN晶体取向的良好对准。此外,在零磁场中已经观察到源于谷霍尔效应的次级DIAC点附近的巨型非局部电阻。我们的实验结果表明,实现了与准弹道传输制度的石墨烯超晶格的高质量样本。

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