Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/2707
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dc.contributor.authorAggarwal, L.-
dc.contributor.authorKumar, Ritesh-
dc.contributor.authorSheet, G.-
dc.contributor.authorGayen, Sirshendu-
dc.contributor.authorDas, Shekhar-
dc.date.accessioned2020-12-04T11:39:08Z-
dc.date.available2020-12-04T11:39:08Z-
dc.date.issued2017-
dc.identifier.citationNature Communications, 8en_US
dc.identifier.other10.1038/ncomms13974-
dc.identifier.urihttps://www.nature.com/articles/ncomms13974-
dc.identifier.urihttp://hdl.handle.net/123456789/2707-
dc.descriptionOnly IISERM authors are available in the record.-
dc.description.abstractA Weyl semimetal is a topologically non-trivial phase of matter that hosts mass-less Weyl fermions, the particles that remained elusive for more than 80 years since their theoretical discovery. The Weyl semimetals exhibit unique transport properties and remarkably high surface spin polarization. Here we show that a mesoscopic superconducting phase with critical temperature Tc=7 K can be realized by forming metallic point contacts with silver (Ag) on single crystals of TaAs, while neither Ag nor TaAs are superconductors. Andreev reflection spectroscopy of such point contacts reveals a superconducting gap of 1.2 meV that coexists with a high transport spin polarization of 60% indicating a highly spin-polarized supercurrent flowing through the point contacts on TaAs. Therefore, apart from the discovery of a novel mesoscopic superconducting phase, our results also show that the point contacts on Weyl semimetals are potentially important for applications in spintronicsen_US
dc.language.isoen_USen_US
dc.publisherNatureen_US
dc.subjectWeyl semimetalen_US
dc.subjecttopologically non-trivial phaseen_US
dc.subjectmass-less Weyl fermionsen_US
dc.titleMesoscopic superconductivity and high spin polarization coexisting at metallic point contacts on Weyl semimetal TaAsen_US
dc.typeArticleen_US
Appears in Collections:Research Articles

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