约瑟夫森效应
穿透深度
超导电性
凝聚态物理
石墨烯
伦敦贯入深度
皮约瑟夫森结
垂直的
物理
临界电流
渗透(战争)
量子力学
几何学
数学
运筹学
作者
Tianyi Li,John Gallop,Hao Ling,E.J. Romans
摘要
Josephson junctions and SQUIDs with graphene or other 2D materials as the weak link between superconductors have become a hot topic of research in recent years, with respect to both fundamental physics and potential applications. We have previously reported ultra-wide Josephson junctions (up to 80 {\mu}m wide) based on CVD graphene where the critical current was found to be uniformly distributed in the direction perpendicular to the current. In this paper, we demonstrate that the unusually large Josephson penetration depth {\lambda}_J that this corresponds to is enabled by the unique geometric structure of Josephson junctions based on 2D materials. We derive a new expression for the Josephson penetration depth of such junctions and verify our assumptions by numerical simulations.
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