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Measured potential profile in a quantum anomalous Hall system suggests bulk-dominated current flow

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arxiv 2112.13123 v3 pith:QAIBYPFI submitted 2021-12-24 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords currentflowhallquantumanomalousbulksystemselevated
verification ladder T0 review T1 audit T2 compute T3 formal
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Ideally, quantum anomalous Hall systems should display zero longitudinal resistance. Yet in experimental quantum anomalous Hall systems elevated temperature can make the longitudinal resistance finite, indicating dissipative flow of electrons. Here, we show that the measured potentials at multiple locations within a device at elevated temperature are well-described by solution of Laplace's equation, assuming spatially-uniform conductivity, suggesting non-equilibrium current flows through the two-dimensional bulk. Extrapolation suggests that at even lower temperatures current may still flow primarily through the bulk rather than, as had been assumed, through edge modes. An argument for bulk current flow previously applied to quantum Hall systems supports this picture.

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