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Superconducting diode effect via conformal-mapped nanoholes

Authors :
Milorad V. Milošević
François M. Peeters
Zhili Xiao
Wai-Kwong Kwok
Peiheng Wu
Ralu Divan
Yang-Yang Lyu
John E. Pearson
Qing-Hu Chen
Huabing Wang
Ji Jiang
Yong-Lei Wang
Sining Dong
Source :
Nature communications, Nature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
Publication Year :
2021

Abstract

A superconducting diode is an electronic device that conducts supercurrent and exhibits zero resistance primarily for one direction of applied current. Such a dissipationless diode is a desirable unit for constructing electronic circuits with ultralow power consumption. However, realizing a superconducting diode is fundamentally and technologically challenging, as it usually requires a material structure without a centre of inversion, which is scarce among superconducting materials. Here, we demonstrate a superconducting diode achieved in a conventional superconducting film patterned with a conformal array of nanoscale holes, which breaks the spatial inversion symmetry. We showcase the superconducting diode effect through switchable and reversible rectification signals, which can be three orders of magnitude larger than that from a flux-quantum diode. The introduction of conformal potential landscapes for creating a superconducting diode is thereby proven as a convenient, tunable, yet vastly advantageous tool for superconducting electronics. This could be readily applicable to any superconducting materials, including cuprates and iron-based superconductors that have higher transition temperatures and are desirable in device applications.<br />25 pages, 4 figures

Details

ISSN :
20411723
Volume :
12
Issue :
1
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....fb3d0a2162981f05c5a62730de7fbd11