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Anomalous magneto-transport in disordered structures: classical edge-state percolation

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arxiv 1511.05218 v1 pith:YEYHAECP submitted 2015-11-16 cond-mat.mes-hall cond-mat.soft

Anomalous magneto-transport in disordered structures: classical edge-state percolation

classification cond-mat.mes-hall cond-mat.soft
keywords dynamicmagneto-transportpercolatingtransitionactivealonganomalousattributed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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By event-driven molecular dynamics simulations we investigate magneto-transport in a two-dimensional model with randomly distributed scatterers close to the field-induced localization transition. This transition is generated by percolating skipping orbits along the edges of obstacle clusters. The dynamic exponents differ significantly from those of the conventional transport problem on percolating systems, thus establishing a new dynamic universality class. This difference is tentatively attributed to a weak-link scenario, which emerges naturally due to barely overlapping edge trajectories. We make predictions for the frequency-dependent conductivity and discuss implications for active colloidal circle swimmers in a heterogeneous environment.

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