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首页> 外文期刊>Physical review >Interaction effects on proximity-induced superconductivity in semiconducting nanowires
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Interaction effects on proximity-induced superconductivity in semiconducting nanowires

机译:相互作用对半导体纳米线中邻近感应超导性的影响

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摘要

We investigate the effect of electron-electron interactions on proximity-induced s-wave superconductivity in one-dimensional nanowires. We treat the interactions on a self-consistent mean-field level, and find an analytic expression for the effective pairing potential in the presence of interactions, valid for a weakly tunnel coupled wire. We show that for a set of two nanowires placed in parallel on a superconducting substrate, the interaction-induced reduction of the pairing energy could result in the effective interwire pairing potential exceeding the intrawire potential, which is one of the requirements for creating a time-reversal symmetric topological superconducting state in such a two-wire system.
机译:我们研究了一维纳米线中电子-电子相互作用对邻近感应的s波超导性的影响。我们在自洽平均场水平上处理相互作用,并在存在相互作用的情况下找到有效配对电位的解析表达式,对弱隧道耦合导线有效。我们表明,对于在超导衬底上平行放置的两根纳米线,相互作用诱导的配对能量降低可能导致有效的线间配对电位超过线内电位,这是创建时间间隔的要求之一。这样的两线系统中的反向对称拓扑超导状态。

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