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arxiv: 1307.2257 · v1 · pith:EIJ65W7Qnew · submitted 2013-07-08 · ❄️ cond-mat.mes-hall · cond-mat.str-el

The effect of electron dielectric response on the quantum capacitance of graphene in a strong magnetic field

classification ❄️ cond-mat.mes-hall cond-mat.str-el
keywords graphenecapacitancequantumdielectricfieldmagneticeffectresponse
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The quantum capacitance of graphene can be negative when the graphene is placed in a strong magnetic field, which is a clear experimental signature of positional correlations between electrons. Here we show that the quantum capacitance of graphene is also strongly affected by its dielectric polarizability, which in a magnetic field is wave vector-dependent. We study this effect both theoretically and experimentally. We develop a theory and numerical procedure for accounting for the graphene dielectric response, and we present measurements of the quantum capacitance of high-quality graphene capacitors on boron nitride. Theory and experiment are found to be in good agreement.

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