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首页> 外文期刊>Nano letters >Current-Phase Relationship, Thermal and Quantum Phase Slips in Superconducting Nanowires Made on a Scaffold Created Using Adhesive Tape
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Current-Phase Relationship, Thermal and Quantum Phase Slips in Superconducting Nanowires Made on a Scaffold Created Using Adhesive Tape

机译:在使用胶带制作的支架上制造的超导纳米线中的电流相位关系,热和量子相移

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摘要

Quantum phase slippage (QPS) in a superconducting nanowire is a new candidate for developing a quantum bit [Mooij et al. New J. Phys. 2005, 7, 219; Mooij et al. Nat Phys. 2006, 2,169; Khlebnikov http://arxiv.org/abs/quant-ph/0210019 2007]. It has also been theoretically predicted that the occurrence of QPS significantly changes the current-phase relationship (CPR) of the wire due to the tunneling between topologically different metastable states [Khlebnikov Phys. Rev. B 2008, 78, 014512]. We present studies on the microwave response of the superconducting nanowires to reveal their CPRs. First, we demonstrate a simple nanowire fabrication technique, based on commercially available adhesive tapes, which allows making thin superconducting wire from different metals. We compare the resistance vs temperature curves of Mo76Ge24 and Al nanowires to the classical and quantum models of phase slips. In order to describe the experimentally observed microwave responses of these nanowires, we use the McCumber-Stewart model [McCumber J. Appl Phys. 1968, 39,3113; Stewart Appl, Phys. Lett. 1968, 12 277], which is generalized to include either classical or quantum CPR.
机译:超导纳米线中的量子相位滑移(QPS)是开发量子比特的新候选者[Mooij et al。新J.Phys。 2005,7,219; Mooij等。 Nat Phys。 2006,2,169; Khlebnikov http://arxiv.org/abs/quant-ph/0210019 2007]。从理论上也已经预测到,由于在拓扑上不同的亚稳态之间的隧穿,QPS的出现会显着改变电线的电流-相位关系(CPR)。 B版,2008,78,014512]。我们目前对超导纳米线的微波响应进行研究,以揭示其CPR。首先,我们展示了一种基于市售胶带的简单纳米线制造技术,该技术可以用不同的金属制造超细导线。我们将Mo76Ge24和Al纳米线的电阻与温度曲线与相移的经典模型和量子模型进行了比较。为了描述实验观察到的这些纳米线的微波响应,我们使用McCumber-Stewart模型[McCumber J. Appl Phys。 1968,39,3113; Stewart Appl,物理学。来吧1968,12 277],它被概括为包括经典CPR或量子CPR。

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