Phase diffusion in graphene-based Josephson junctions.

dc.contributor.author

Borzenets, IV

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Coskun, UC

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Jones, SJ

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Finkelstein, G

dc.date.accessioned

2019-12-22T00:43:52Z

dc.date.available

2019-12-22T00:43:52Z

dc.date.issued

2011-09-21

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2019-12-22T00:43:51Z

dc.description.abstract

We report on graphene-based Josephson junctions with contacts made from lead. The high transition temperature of this superconductor allows us to observe the supercurrent branch at temperatures up to ∼2 K, at which point we can detect a small, but nonzero, resistance. We attribute this resistance to the phase diffusion mechanism, which has not been yet identified in graphene. By measuring the resistance as a function of temperature and gate voltage, we can further characterize the nature of the electromagnetic environment and dissipation in our samples.

dc.identifier.issn

0031-9007

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1079-7114

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https://hdl.handle.net/10161/19629

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eng

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American Physical Society (APS)

dc.relation.ispartof

Physical review letters

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10.1103/physrevlett.107.137005

dc.subject

Science & Technology

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Physical Sciences

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Physics, Multidisciplinary

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Physics

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NOISE

dc.title

Phase diffusion in graphene-based Josephson junctions.

dc.type

Journal article

duke.contributor.orcid

Finkelstein, G|0000-0002-0883-0741

pubs.begin-page

137005

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13

pubs.organisational-group

Trinity College of Arts & Sciences

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Duke

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Physics

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Duke Institute for Brain Sciences

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University Institutes and Centers

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Institutes and Provost's Academic Units

pubs.publication-status

Published

pubs.volume

107

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