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Detecting degeneracy and subtle broken-symmetry states of graphene at nanoscale

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arxiv 1806.08882 v2 pith:XRN5MNKA submitted 2018-06-23 cond-mat.mes-hall cond-mat.mtrl-sci

classification cond-mat.mes-hallcond-mat.mtrl-sci
keywords graphenenanoscalesplittingstatesbroken-symmetrydefectsdegeneracyaround
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Measuring degeneracy and broken-symmetry states of a system at nanoscale requires extremely high energy and spatial resolution, which has so far eluded direct observation. Here, we realize measurement of the degeneracy and subtle broken-symmetry states of graphene at nanoscale for the first time. By using edge-free graphene quantum dots, we are able to measure valley splitting and valley-contrasting spin splitting of graphene at the single-electron level. Our experiments detect large valley splitting around atomic defects of graphene due to the coexistence of sublattice symmetry breaking and time reversal symmetry breaking. Large valley-contrasting spin splitting induced by enhanced spin-orbit coupling around the defects is also observed. These results reveal unexplored exotic electronic states in graphene at nanoscale induced by the atomic defects.

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  1. Valley and Zeeman Splittings in Multilayer Epitaxial Graphene Revealed by Circular Polarization Resolved Magneto-infrared Spectroscopy

    cond-mat.mes-hall 2019-09 conditional novelty 7.0 of 10

    Circular polarization resolved magneto-infrared spectroscopy of multilayer epitaxial graphene reveals a four-fold splitting of the monolayer n=0 Landau level transition, with extracted valley and Zeeman g-factors of 6...

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