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Quantum Hall-based superconducting interference device

delete2019-09-06
delete33
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OA
AI
A
Andrew Seredinski *
A
Anne Draelos
E
Ethan G. Arnault
M
Ming Wei
H
Hengming Li
T
Tate Fleming
K
Kenji Watanabe
T
Takashi Taniguchi
F
François Amet
G
Gleb Finkelstein
DOI:10.1126/sciadv.aaw8693delete
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Abstract

Abstract

En 中文
We present a study of a graphene-based Josephson junction with dedicated side gates carved from the same sheet of graphene as the junction itself. These side gates are highly efficient and allow us to modulate carrier density along either edge of the junction in a wide range. In particular, in magnetic fields in the 1- to 2-T range, we are able to populate the next Landau level, resulting in Hall plateaus with conductance that differs from the bulk filling factor. When counter-propagating quantum Hall edge states are introduced along either edge, we observe a supercurrent localized along that edge of the junction. Here, we study these supercurrents as a function of magnetic field and carrier density.
Keywords:
JOSEPHSON-JUNCTIONS
GRAPHENE
SUPERCURRENT
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Science Advances cover
Science Advances
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