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Anomalous Phase Dynamics of Driven Graphene Josephson Junctions

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arxiv 1910.10125 v1 pith:UMW5SPB6 submitted 2019-10-22 cond-mat.mes-hall nlin.CD

Anomalous Phase Dynamics of Driven Graphene Josephson Junctions

classification cond-mat.mes-hall nlin.CD
keywords josephsonjunctionsdirectdynamicseffectexoticgraphenenonlinear
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Josephson junctions with weak-links of exotic materials allow the elucidation of the Josephson effect in previously unexplored regimes. Further, such devices offer a direct probe of novel material properties, for example in the search for Majorana fermions. In this work, we report on DC and AC Josephson effect of high-mobility, hexagonal boron nitride (h-BN) encapsulated graphene Josephson junctions. On the application of RF radiation, we measure phase-locked Shapiro steps. An unexpected bistability between $\pm 1$ steps is observed with switching times on the order of seconds. A critical scaling of a bistable state is measured directly from the switching time, allowing for direct comparison to numerical simulations. We show such intermittent chaotic behavior is a consequence of the nonlinear dynamics of the junction and has a sensitive dependence on the current-phase relation. This work draws connections between nonlinear phenomena in dynamical systems and their implications for ongoing condensed matter experiments exploring topology and exotic physics.

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