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Superconductivity in a single-C60 transistor

机译:单C60晶体管中的超导性

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Single-molecule transistors are currently attracting enormous attention as possible quantum information processing devices1–5. An intrinsic limitation to their prospects, however, is associated with the presence of a small number of quantized conductance channels, each channel with a high access resistance of at best RK=2 D h=2e2 D 12:9 k. However, when the contacting leads become superconducting, long-range correlations can extend throughout the whole system by means of the proximity effect. This not only lifts the resistive limitation of normal-state contacts, but further paves the way to probe electron transport through a single molecule. Here we demonstrate the realization of superconducting singlemolecule transistors involving a single C60 fullerene molecule. In the past few years, we have seen gate-controlled Josephson supercurrents induced in the family of low-dimensional carbon structures such as flakes of two-dimensional graphene6 and portions of one-dimensional carbon nanotubes7. The present study, involving a full zero-dimensional fullerene, completes the picture.
机译:当前,单分子晶体管作为可能的量子信息处理设备1-5引起了极大的关注。然而,对它们的前景的内在限制与少量量化电导通道的存在有关,每个通道的最高访问电阻最高为RK = 2 D h = 2e2 D 12:9 k。但是,当接触引线变得超导时,借助相关效应,远距离相关性会扩展到整个系统。这不仅解除了正常状态接触的电阻限制,而且还为探测通过单个分子的电子传输铺平了道路。在这里,我们演示了涉及单个C60富勒烯分子的超导单分子晶体管的实现。在过去的几年中,我们已经看到了在低维碳结构族(例如二维石墨烯薄片6和一维碳纳米管的一部分)7中诱导的门控约瑟夫森超电流。本研究涉及一个完整的零维富勒烯,使情况更完整。

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