A layered two-dimensional superconducting material 2H-NbSe 2 is used to build a van der Waals heterostructure, where a proximity-coupled superconducting order can be induced in the interfacing materials. Vertically stacked NbSe 2 –graphene–NbSe 2 is fabricated using van der Waals interlayer coupling, producing defect-free contacts with a high interfacial transparency. The atomically thin graphene layer allows the formation of a highly coherent proximity Josephson coupling between the two NbSe 2 flakes. The temperature dependence of the junction critical current ( I c ) reveals short and ballistic Josephson coupling characteristics that agree with theoretical prediction. The strong Josephson coupling is confirmed by a large junction critical current density of 1.6 × 10 4 A/cm 2, multiple Andreev reflections in the subgap structure of the differential conductance, and a magnetic-field modulation of I c . This is the first demonstration of strongly proximity-coupled Josephson junctions with extremely clean interfaces in a dry-transfer-stacked van der Waals heterostructure.
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Kim et al. (2017) studied this question.
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