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Complete gate control of supercurrent in graphene p-n junctions SCIE SCOPUS

Title
Complete gate control of supercurrent in graphene p-n junctions
Authors
Choi, JHLee, GHPark, SHJeong, DCLee, JOSim, HSDoh, YJLee, HJ
Date Issued
2013-09
Publisher
NATURE PUBLISHING GROUP
Abstract
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the charge neutrality point, impeding further development of superconducting quantum information devices based on graphene. Here we fabricate bipolar Josephson junctions of graphene, in which a p-n potential barrier is formed in graphene with two closely spaced superconducting contacts, and realize supercurrent ON/OFF states using electrostatic gating only. The bipolar Josephson junctions of graphene also show fully gate-driven macroscopic quantum tunnelling behaviour of Josephson phase particles in a potential well, where the confinement energy is gate tuneable. We suggest that the supercurrent OFF state is mainly caused by a supercurrent dephasing mechanism due to a random pseudomagnetic field generated by ripples in graphene, in sharp contrast to other nanohybrid Josephson junctions. Our study may pave the way for the development of new gate-tuneable superconducting quantum information devices.
URI
https://oasis.postech.ac.kr/handle/2014.oak/11776
DOI
10.1038/NCOMMS3525
ISSN
2041-1723
Article Type
Article
Citation
NATURE COMMUNICATIONS, vol. 4, 2013-09
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