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基于近邻金属纳米结的约瑟夫森量子干涉仪电流-磁通关系的门控

Gate Control of the Current-Flux Relation of a Josephson Quantum Interferometer Based on Proximitized Metallic Nanojuntions.

作者信息

De Simoni Giorgio, Battisti Sebastiano, Ligato Nadia, Mercaldo Maria Teresa, Cuoco Mario, Giazotto Francesco

机构信息

NEST, Istituto Nanoscienze-CNR and Scuola Normale Superiore, I-56127 Pisa, Italy.

Department of Physics "E. Fermi", Universitá di Pisa, Largo Pontecorvo 3, I-56127 Pisa, Italy.

出版信息

ACS Appl Electron Mater. 2021 Sep 28;3(9):3927-3935. doi: 10.1021/acsaelm.1c00508. Epub 2021 Sep 8.

Abstract

We demonstrate an Al superconducting quantum interference device in which the Josephson junctions are implemented through gate-controlled proximity Cu mesoscopic weak links. This specific kind of metallic weak links behaves analogously to genuine superconducting metals in terms of the response to electrostatic gating and provides a good performance in terms of current-modulation visibility. We show that through the application of a static gate voltage we can modify the interferometer current-flux relation in a fashion that seems compatible with the introduction of π-channels within the gated weak link. Our results suggest that the microscopic mechanism at the origin of the suppression of the switching current in the interferometer is apparently phase coherent, resulting in an overall damping of the superconducting phase rigidity. We finally tackle the performance of the interferometer in terms of responsivity to magnetic flux variations in the dissipative regime and discuss the practical relevance of gated proximity-based all-metallic SQUIDs for magnetometry at the nanoscale.

摘要

我们展示了一种铝超导量子干涉器件,其中约瑟夫森结是通过栅极控制的近邻铜介观弱连接来实现的。这种特定类型的金属弱连接在对静电门控的响应方面表现得类似于真正的超导金属,并且在电流调制可见度方面具有良好性能。我们表明通过施加静态栅极电压,可以以一种似乎与在门控弱连接中引入π通道相兼容的方式来修改干涉仪电流-磁通关系。我们的结果表明,干涉仪中开关电流抑制起源处的微观机制显然是相位相干的,导致超导相位刚度整体衰减。我们最终探讨了干涉仪在耗散 regime 中对磁通变化的响应率方面的性能,并讨论了基于门控近邻的全金属超导量子干涉器件在纳米级磁力测量中的实际相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a98/9555709/cea07d0a980a/el1c00508_0001.jpg

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