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Metallic supercurrent field-effect transistor

delete2018-07-02
delete105
PRE
AI
G
Giorgio De Simoni
F
Federico Paolucci
P
Paolo Solinas
E
Elia Strambini
F
Francesco Giazotto *
DOI:10.1038/s41565-018-0190-3delete
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Abstract

Abstract

En 中文
In their original formulation of superconductivity, the London brothers predicted(1) the exponential suppression of an electrostatic field inside a superconductor over the so-called London penetration depth(2-4), lambda(L). Despite a few experiments indicating hints of perturbation induced by electrostatic fields(5-7), no clue has been provided so far on the possibility to manipulate metallic superconductors via the field effect. Here, we report field-effect control of the supercurrent in all-metallic transistors made of different Bardeen-Cooper-Schrieffer superconducting thin films. At low temperature, our field-effect transistors show a monotonic decay of the critical current under increasing electrostatic field up to total quenching for gate voltage values as large as +/- 40 V in titanium-based devices. This bipolar field effect persists up to similar to 85% of the critical temperature (similar to 0.41 K), and in the presence of sizable magnetic fields. A similar behaviour is observed in aluminium thin-film field-effect transistors. A phenomenological theory accounts for our observations, and points towards the interpretation in terms of an electric-fieldinduced perturbation propagating inside the superconducting film. In our understanding, this affects the pairing potential and quenches the supercurrent. These results could represent a groundbreaking asset for the realization of all-metallic superconducting field-effect electronics and leading-edge quantum information architectures(8,9).
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COHERENT CALORITRONICS
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Journal

Nature Nanotechnology cover
Nature Nanotechnology
IF:
34.9
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4.8K
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scuola normale superiore di pisa
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