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Electrostatic Field-Driven Supercurrent Suppression in Ionic-Gated Metallic Superconducting Nanotransistors

Academic Article
Publication Date:
2022
abstract:
Recent experiments have shown the possibility of tuning the transport properties of metallic nanosized superconductors through a gate voltage. These results renewed the longstanding debate on the interaction between electrostatic fields and superconductivity. Indeed, different works suggested competing mechanisms as the cause of the effect: an unconventional electric field-effect or quasiparticle injection. Here, we provide conclusive evidence for the electrostatic-field-driven control of the supercurrent in metallic nanosized superconductors, by realizing ionic-gated superconducting field-effect nanotransistors (ISFETs) where electron injection is impossible. Our Nb ISFETs show giant suppression of the superconducting critical current of up to similar to 45%. Moreover, the bipolar supercurrent suppression observed in different ISFETs, together with invariant critical temperature and normal-state resistance, also excludes conventional charge accumulation/depletion. Therefore, the microscopic explanation of this effect calls upon a novel theory able to describe the nontrivial interaction of static electric fields with conventional superconductivity.
Iris type:
01.01 Articolo in rivista
Keywords:
Field-effect; superconductivity; electrolytes; transistor; electric field
List of contributors:
Paolucci, Federico; Puglia, Claudio; Bours, Lennart; Strambini, Elia; DE SIMONI, Giorgio; Giazotto, Francesco
Authors of the University:
DE SIMONI GIORGIO
GIAZOTTO FRANCESCO
STRAMBINI ELIA
Handle:
https://iris.cnr.it/handle/20.500.14243/443771
Published in:
NANO LETTERS (PRINT)
Journal
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URL

https://pubs.acs.org/doi/10.1021/acs.nanolett.1c03481
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