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Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)

The Hall effect is a powerful tool for investigating carrier type and density. For single-band materials, the Hall coefficient is traditionally expressed simply by [Image: see text], where e is the charge of the carrier, and n is the concentration. However, it is well known that in the critical regi...

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Autores principales: Iida, Kazumasa, Grinenko, Vadim, Kurth, Fritz, Ichinose, Ataru, Tsukada, Ichiro, Ahrens, Eike, Pukenas, Aurimas, Chekhonin, Paul, Skrotzki, Werner, Teresiak, Angelika, Hühne, Ruben, Aswartham, Saicharan, Wurmehl, Sabine, Mönch, Ingolf, Erbe, Manuela, Hänisch, Jens, Holzapfel, Bernhard, Drechsler, Stefan-Ludwig, Efremov, Dmitri V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4916655/
https://www.ncbi.nlm.nih.gov/pubmed/27328948
http://dx.doi.org/10.1038/srep28390
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author Iida, Kazumasa
Grinenko, Vadim
Kurth, Fritz
Ichinose, Ataru
Tsukada, Ichiro
Ahrens, Eike
Pukenas, Aurimas
Chekhonin, Paul
Skrotzki, Werner
Teresiak, Angelika
Hühne, Ruben
Aswartham, Saicharan
Wurmehl, Sabine
Mönch, Ingolf
Erbe, Manuela
Hänisch, Jens
Holzapfel, Bernhard
Drechsler, Stefan-Ludwig
Efremov, Dmitri V.
author_facet Iida, Kazumasa
Grinenko, Vadim
Kurth, Fritz
Ichinose, Ataru
Tsukada, Ichiro
Ahrens, Eike
Pukenas, Aurimas
Chekhonin, Paul
Skrotzki, Werner
Teresiak, Angelika
Hühne, Ruben
Aswartham, Saicharan
Wurmehl, Sabine
Mönch, Ingolf
Erbe, Manuela
Hänisch, Jens
Holzapfel, Bernhard
Drechsler, Stefan-Ludwig
Efremov, Dmitri V.
author_sort Iida, Kazumasa
collection PubMed
description The Hall effect is a powerful tool for investigating carrier type and density. For single-band materials, the Hall coefficient is traditionally expressed simply by [Image: see text], where e is the charge of the carrier, and n is the concentration. However, it is well known that in the critical region near a quantum phase transition, as it was demonstrated for cuprates and heavy fermions, the Hall coefficient exhibits strong temperature and doping dependencies, which can not be described by such a simple expression, and the interpretation of the Hall coefficient for Fe-based superconductors is also problematic. Here, we investigate thin films of Ba(Fe(1−x)Co(x))(2)As(2) with compressive and tensile in-plane strain in a wide range of Co doping. Such in-plane strain changes the band structure of the compounds, resulting in various shifts of the whole phase diagram as a function of Co doping. We show that the resultant phase diagrams for different strain states can be mapped onto a single phase diagram with the Hall number. This universal plot is attributed to the critical fluctuations in multiband systems near the antiferromagnetic transition, which may suggest a direct link between magnetic and superconducting properties in the BaFe(2)As(2) system.
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spelling pubmed-49166552016-06-27 Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2) Iida, Kazumasa Grinenko, Vadim Kurth, Fritz Ichinose, Ataru Tsukada, Ichiro Ahrens, Eike Pukenas, Aurimas Chekhonin, Paul Skrotzki, Werner Teresiak, Angelika Hühne, Ruben Aswartham, Saicharan Wurmehl, Sabine Mönch, Ingolf Erbe, Manuela Hänisch, Jens Holzapfel, Bernhard Drechsler, Stefan-Ludwig Efremov, Dmitri V. Sci Rep Article The Hall effect is a powerful tool for investigating carrier type and density. For single-band materials, the Hall coefficient is traditionally expressed simply by [Image: see text], where e is the charge of the carrier, and n is the concentration. However, it is well known that in the critical region near a quantum phase transition, as it was demonstrated for cuprates and heavy fermions, the Hall coefficient exhibits strong temperature and doping dependencies, which can not be described by such a simple expression, and the interpretation of the Hall coefficient for Fe-based superconductors is also problematic. Here, we investigate thin films of Ba(Fe(1−x)Co(x))(2)As(2) with compressive and tensile in-plane strain in a wide range of Co doping. Such in-plane strain changes the band structure of the compounds, resulting in various shifts of the whole phase diagram as a function of Co doping. We show that the resultant phase diagrams for different strain states can be mapped onto a single phase diagram with the Hall number. This universal plot is attributed to the critical fluctuations in multiband systems near the antiferromagnetic transition, which may suggest a direct link between magnetic and superconducting properties in the BaFe(2)As(2) system. Nature Publishing Group 2016-06-22 /pmc/articles/PMC4916655/ /pubmed/27328948 http://dx.doi.org/10.1038/srep28390 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Iida, Kazumasa
Grinenko, Vadim
Kurth, Fritz
Ichinose, Ataru
Tsukada, Ichiro
Ahrens, Eike
Pukenas, Aurimas
Chekhonin, Paul
Skrotzki, Werner
Teresiak, Angelika
Hühne, Ruben
Aswartham, Saicharan
Wurmehl, Sabine
Mönch, Ingolf
Erbe, Manuela
Hänisch, Jens
Holzapfel, Bernhard
Drechsler, Stefan-Ludwig
Efremov, Dmitri V.
Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)
title Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)
title_full Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)
title_fullStr Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)
title_full_unstemmed Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)
title_short Hall-plot of the phase diagram for Ba(Fe(1−x)Co(x))(2)As(2)
title_sort hall-plot of the phase diagram for ba(fe(1−x)co(x))(2)as(2)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4916655/
https://www.ncbi.nlm.nih.gov/pubmed/27328948
http://dx.doi.org/10.1038/srep28390
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