Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2

The supercurrent diode effect was recently observed in a Nb/V/Ta superlattice thin film with Rashba-type spin-orbit coupling. Here, the authors observe this effect in few-layer NbSe2 crystals driven by valley-Zeeman-type spin-orbit coupling and find that the effect is proportional to out-of-plane ma...

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Main Authors: Lorenz Bauriedl, Christian Bäuml, Lorenz Fuchs, Christian Baumgartner, Nicolas Paulik, Jonas M. Bauer, Kai-Qiang Lin, John M. Lupton, Takashi Taniguchi, Kenji Watanabe, Christoph Strunk, Nicola Paradiso
Format: Article
Language:English
Published: Nature Portfolio 2022-07-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-31954-5
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author Lorenz Bauriedl
Christian Bäuml
Lorenz Fuchs
Christian Baumgartner
Nicolas Paulik
Jonas M. Bauer
Kai-Qiang Lin
John M. Lupton
Takashi Taniguchi
Kenji Watanabe
Christoph Strunk
Nicola Paradiso
author_facet Lorenz Bauriedl
Christian Bäuml
Lorenz Fuchs
Christian Baumgartner
Nicolas Paulik
Jonas M. Bauer
Kai-Qiang Lin
John M. Lupton
Takashi Taniguchi
Kenji Watanabe
Christoph Strunk
Nicola Paradiso
author_sort Lorenz Bauriedl
collection DOAJ
description The supercurrent diode effect was recently observed in a Nb/V/Ta superlattice thin film with Rashba-type spin-orbit coupling. Here, the authors observe this effect in few-layer NbSe2 crystals driven by valley-Zeeman-type spin-orbit coupling and find that the effect is proportional to out-of-plane magnetic field.
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spelling doaj.art-9b11327ce19447d6928c0c8092a60ae42022-12-22T00:45:20ZengNature PortfolioNature Communications2041-17232022-07-011311710.1038/s41467-022-31954-5Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2Lorenz Bauriedl0Christian Bäuml1Lorenz Fuchs2Christian Baumgartner3Nicolas Paulik4Jonas M. Bauer5Kai-Qiang Lin6John M. Lupton7Takashi Taniguchi8Kenji Watanabe9Christoph Strunk10Nicola Paradiso11Institut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgInternational Center for Materials Nanoarchitectonics, National Institute for Materials ScienceInternational Center for Materials Nanoarchitectonics, National Institute for Materials ScienceInstitut für Experimentelle und Angewandte Physik, University of RegensburgInstitut für Experimentelle und Angewandte Physik, University of RegensburgThe supercurrent diode effect was recently observed in a Nb/V/Ta superlattice thin film with Rashba-type spin-orbit coupling. Here, the authors observe this effect in few-layer NbSe2 crystals driven by valley-Zeeman-type spin-orbit coupling and find that the effect is proportional to out-of-plane magnetic field.https://doi.org/10.1038/s41467-022-31954-5
spellingShingle Lorenz Bauriedl
Christian Bäuml
Lorenz Fuchs
Christian Baumgartner
Nicolas Paulik
Jonas M. Bauer
Kai-Qiang Lin
John M. Lupton
Takashi Taniguchi
Kenji Watanabe
Christoph Strunk
Nicola Paradiso
Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2
Nature Communications
title Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2
title_full Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2
title_fullStr Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2
title_full_unstemmed Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2
title_short Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe2
title_sort supercurrent diode effect and magnetochiral anisotropy in few layer nbse2
url https://doi.org/10.1038/s41467-022-31954-5
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