Proximitized Josephson junctions in highly-doped InAs nanowires robust to optical illumination

Author:

Yang LilyORCID,Steinhauer StephanORCID,Strambini Elia,Lettner Thomas,Schweickert Lucas,Versteegh Marijn A MORCID,Zannier ValentinaORCID,Sorba LuciaORCID,Solenov Dmitry,Giazotto Francesco

Abstract

Abstract We have studied the effects of optical-frequency light on proximitized InAs/Al Josephson junctions based on highly n-doped InAs nanowires at varying incident photon flux and at three different photon wavelengths. The experimentally obtained IV curves were modeled using a resistively shunted junction model which takes scattering at the contact interfaces into account. Despite the fact that the InAs weak link is photosensitive, the Josephson junctions were found to be surprisingly robust, interacting with the incident radiation only through heating, whereas above the critical current our devices showed non-thermal effects resulting from photon exposure. Our work indicates that Josephson junctions based on highly-doped InAs nanowires can be integrated in close proximity to photonic circuits. The results also suggest that such junctions can be used for optical-frequency photon detection through thermal processes by measuring a shift in critical current.

Funder

VINNOVA

H2020 FET Open

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

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