Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe

The data were created while performing transport measurements on different single crystals of FexCu1-xSe (x~0.0025(4)) under applied pressure using a piston cylinder cell fitted in 16T PPMS. Measurements were performed as a function of temperature, magnetic field at different applied pressures. The...

Full description

Bibliographic Details
Main Author: Zajicek, Z
Other Authors: Singh, S J
Format: Dataset
Published: University of Oxford 2022
Subjects:
_version_ 1797108106453319680
author Zajicek, Z
author2 Singh, S J
author_facet Singh, S J
Zajicek, Z
author_sort Zajicek, Z
collection OXFORD
description The data were created while performing transport measurements on different single crystals of FexCu1-xSe (x~0.0025(4)) under applied pressure using a piston cylinder cell fitted in 16T PPMS. Measurements were performed as a function of temperature, magnetic field at different applied pressures. The data are standard ASCII files and they are part of a publication with the same title: Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe, by by Z. Zajicek, S. J. Singh, and A. I. Coldea to appear in Physical Review Research in 2022. The data is accompanied by the resulting Figures in PDF format which belong to the original publication.
first_indexed 2024-03-07T07:22:59Z
format Dataset
id oxford-uuid:7dad02a0-27a0-4eac-9285-4674d77c0e30
institution University of Oxford
last_indexed 2024-03-07T07:22:59Z
publishDate 2022
publisher University of Oxford
record_format dspace
spelling oxford-uuid:7dad02a0-27a0-4eac-9285-4674d77c0e302022-11-09T13:08:15ZRobust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe Datasethttp://purl.org/coar/resource_type/c_ddb1uuid:7dad02a0-27a0-4eac-9285-4674d77c0e30Electronic propertiesCondensed Matter PhysicsSuperconductivityHyrax DepositUniversity of Oxford2022Zajicek, ZSingh, S JColdea, A IColdea, A IThe data were created while performing transport measurements on different single crystals of FexCu1-xSe (x~0.0025(4)) under applied pressure using a piston cylinder cell fitted in 16T PPMS. Measurements were performed as a function of temperature, magnetic field at different applied pressures. The data are standard ASCII files and they are part of a publication with the same title: Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe, by by Z. Zajicek, S. J. Singh, and A. I. Coldea to appear in Physical Review Research in 2022. The data is accompanied by the resulting Figures in PDF format which belong to the original publication.
spellingShingle Electronic properties
Condensed Matter Physics
Superconductivity
Zajicek, Z
Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
title Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
title_full Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
title_fullStr Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
title_full_unstemmed Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
title_short Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
title_sort robust superconductivity and fragile magnetism induced by the strong cu impurity scattering in the high pressure phase of fese
topic Electronic properties
Condensed Matter Physics
Superconductivity
work_keys_str_mv AT zajicekz robustsuperconductivityandfragilemagnetisminducedbythestrongcuimpurityscatteringinthehighpressurephaseoffese