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Quantum Hall nano-interferometer in graphene

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arxiv 2110.07979 v1 pith:EWQEXEEJ submitted 2021-10-15 cond-mat.mes-hall

Quantum Hall nano-interferometer in graphene

classification cond-mat.mes-hall
keywords hallquantumcoulombgrapheneratiostatesantidots-basedarea
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum Hall edge states offer avenues for quasiparticle interferometry, provided that the ratio between phase coherence length and quantum Hall interferometer (QHI) size is large enough. Maximizing this ratio by shrinking the QHI area favors Coulomb interactions, impairing clear interferences observation. Here, we use scanning gate spectroscopy to probe interference regime in antidots-based graphene nano-QHIs, free of localized states (LS). A simple Fabry-Perot model, without Coulomb interaction, reproduces the QHI phenomenology, even in the smallest QHI, highlighting the LS detrimental role.

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