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Overdamped Phase Diffusion in hBN Encapsulated Graphene Josephson Junctions

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arxiv 2011.04142 v2 pith:DG2I7CQ3 submitted 2020-11-09 cond-mat.mes-hall cond-mat.supr-con

Overdamped Phase Diffusion in hBN Encapsulated Graphene Josephson Junctions

classification cond-mat.mes-hall cond-mat.supr-con
keywords junctionsdiffusiongraphenejosephsonphaseencapsulatedjunctionmechanism
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the zero-bias behavior of Josephson junctions made of encapsulated graphene boron nitride heterostructures in the long ballistic junction regime. For temperatures down to 2.7K, the junctions appear non-hysteretic with respect to the switching and retrapping currents $I_C$ and $I_R$. A small non-zero resistance is observed even around zero bias current, and scales with temperature as dictated by the phase diffusion mechanism. By varying the graphene carrier concentration we are able to confirm that the observed phase diffusion mechanism follows the trend for an overdamped Josephson junction. This is in contrast with the majority of graphene-based junctions which are underdamped and shorted by the environment at high frequencies.

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