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Patterning Superconductivity in a Topological Insulator

机译:拓扑绝缘体中的图案化超导

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Topologically protected states in combination with superconductivity hold great promise for quantum computing applications, but the progress on electrical transport measurements in such systems has been impeded by the difficulty of fabricating devices with reliable electrical contacts. We find that superconductivity can be patterned directly into Bi2Se3 nanostructures by local doping with palladium. Superconducting regions are defined by depositing palladium on top of the nanostructures using electron beam lithography followed by in situ annealing. Electrical transport measurements at low temperatures show either partial or full superconducting transition, depending on the doping conditions. Structural characterization techniques indicate that palladium remains localized in the targeted areas, making it possible to pattern superconducting circuits of arbitrary shapes in this topological material.
机译:拓扑保护的状态与超导性相结合对量子计算应用具有很大的希望,但是通过具有可靠电触点的装置的难度来阻碍这种系统中的电气传输测量的进展。 我们发现,通过用局部掺杂,可以将超导性直接被局部地图案化为Bi2Se3纳米结构。 通过使用电子束光刻沉积在纳米结构顶部的钯上,然后原位退火来限定超导区域。 根据掺杂条件,低温下的电气传输测量显示出部分或完全超导过渡。 结构表征技术表明钯保持在目标区域中的局部,使得可以在这种拓扑材料中进行任意形状的超导电路。

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