Extremely high conductivity observed in the triple point topological metal MoP

Although novel topological quasiparticles have recently been evidenced, their electrical transport properties remain elusive. Here, the authors report ultra-low resistivity down to 6 nΩcm at 2 K in MoP with a large mean free path, which hints on the exotic properties of triple point fermions.

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Autores principales: Nitesh Kumar, Yan Sun, Michael Nicklas, Sarah J. Watzman, Olga Young, Inge Leermakers, Jacob Hornung, Johannes Klotz, Johannes Gooth, Kaustuv Manna, Vicky Süß, Satya N. Guin, Tobias Förster, Marcus Schmidt, Lukas Muechler, Binghai Yan, Peter Werner, Walter Schnelle, Uli Zeitler, Jochen Wosnitza, Stuart S. P. Parkin, Claudia Felser, Chandra Shekhar
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/82c0430d9f1d402c811527aa500ca0a1
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spelling oai:doaj.org-article:82c0430d9f1d402c811527aa500ca0a12021-12-02T15:35:11ZExtremely high conductivity observed in the triple point topological metal MoP10.1038/s41467-019-10126-y2041-1723https://doaj.org/article/82c0430d9f1d402c811527aa500ca0a12019-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10126-yhttps://doaj.org/toc/2041-1723Although novel topological quasiparticles have recently been evidenced, their electrical transport properties remain elusive. Here, the authors report ultra-low resistivity down to 6 nΩcm at 2 K in MoP with a large mean free path, which hints on the exotic properties of triple point fermions.Nitesh KumarYan SunMichael NicklasSarah J. WatzmanOlga YoungInge LeermakersJacob HornungJohannes KlotzJohannes GoothKaustuv MannaVicky SüßSatya N. GuinTobias FörsterMarcus SchmidtLukas MuechlerBinghai YanPeter WernerWalter SchnelleUli ZeitlerJochen WosnitzaStuart S. P. ParkinClaudia FelserChandra ShekharNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nitesh Kumar
Yan Sun
Michael Nicklas
Sarah J. Watzman
Olga Young
Inge Leermakers
Jacob Hornung
Johannes Klotz
Johannes Gooth
Kaustuv Manna
Vicky Süß
Satya N. Guin
Tobias Förster
Marcus Schmidt
Lukas Muechler
Binghai Yan
Peter Werner
Walter Schnelle
Uli Zeitler
Jochen Wosnitza
Stuart S. P. Parkin
Claudia Felser
Chandra Shekhar
Extremely high conductivity observed in the triple point topological metal MoP
description Although novel topological quasiparticles have recently been evidenced, their electrical transport properties remain elusive. Here, the authors report ultra-low resistivity down to 6 nΩcm at 2 K in MoP with a large mean free path, which hints on the exotic properties of triple point fermions.
format article
author Nitesh Kumar
Yan Sun
Michael Nicklas
Sarah J. Watzman
Olga Young
Inge Leermakers
Jacob Hornung
Johannes Klotz
Johannes Gooth
Kaustuv Manna
Vicky Süß
Satya N. Guin
Tobias Förster
Marcus Schmidt
Lukas Muechler
Binghai Yan
Peter Werner
Walter Schnelle
Uli Zeitler
Jochen Wosnitza
Stuart S. P. Parkin
Claudia Felser
Chandra Shekhar
author_facet Nitesh Kumar
Yan Sun
Michael Nicklas
Sarah J. Watzman
Olga Young
Inge Leermakers
Jacob Hornung
Johannes Klotz
Johannes Gooth
Kaustuv Manna
Vicky Süß
Satya N. Guin
Tobias Förster
Marcus Schmidt
Lukas Muechler
Binghai Yan
Peter Werner
Walter Schnelle
Uli Zeitler
Jochen Wosnitza
Stuart S. P. Parkin
Claudia Felser
Chandra Shekhar
author_sort Nitesh Kumar
title Extremely high conductivity observed in the triple point topological metal MoP
title_short Extremely high conductivity observed in the triple point topological metal MoP
title_full Extremely high conductivity observed in the triple point topological metal MoP
title_fullStr Extremely high conductivity observed in the triple point topological metal MoP
title_full_unstemmed Extremely high conductivity observed in the triple point topological metal MoP
title_sort extremely high conductivity observed in the triple point topological metal mop
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/82c0430d9f1d402c811527aa500ca0a1
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