GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires

Abstract We present a model for the variation of the upper critical field H c2 with Sn content in A15-type Nb-Sn wires, within the Ginzburg-Landau-Abrikosov-Gor’kov (GLAG) theory frame. H c2 at the vicinity of the critical temperature T c is related quantitatively to the electrical resistivity ρ, sp...

Full description

Bibliographic Details
Main Authors: Yingxu Li, Yuanwen Gao
Format: Article
Language:English
Published: Nature Publishing Group 2017-04-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-01292-4
id doaj-e6441b99bb7a4bc48664b5408b6ca854
record_format Article
spelling doaj-e6441b99bb7a4bc48664b5408b6ca8542020-12-08T03:19:42ZengNature Publishing GroupScientific Reports2045-23222017-04-017111310.1038/s41598-017-01292-4GLAG theory for superconducting property variations with A15 composition in Nb3Sn wiresYingxu Li0Yuanwen Gao1Key Laboratory of Mechanics on Environment and Disaster in Western China, Lanzhou University, The Ministry of Education of ChinaKey Laboratory of Mechanics on Environment and Disaster in Western China, Lanzhou University, The Ministry of Education of ChinaAbstract We present a model for the variation of the upper critical field H c2 with Sn content in A15-type Nb-Sn wires, within the Ginzburg-Landau-Abrikosov-Gor’kov (GLAG) theory frame. H c2 at the vicinity of the critical temperature T c is related quantitatively to the electrical resistivity ρ, specific heat capacity coefficient γ and T c. H c2 versus tin content is theoretically formulated within the GLAG theory, and generally reproduces the experiment results. As Sn content gradually approaches the stoichiometry, A15-type Nb-Sn undergoes a transition from the dirty limit to clean limit, split by the phase transformation boundary. The H-T phase boundary and pinning force show different behaviors in the cubic and tetragonal phase. We dipict the dependence of the composition gradient on the superconducting properties variation in the A15 layer, as well as the curved tail at vicinity of H c2 in the Kramer plot of the Nb3Sn wire. This helps understanding of the inhomogeneous-composition inducing discrepancy between the results by the state-of-art scaling laws and experiments.https://doi.org/10.1038/s41598-017-01292-4
collection DOAJ
language English
format Article
sources DOAJ
author Yingxu Li
Yuanwen Gao
spellingShingle Yingxu Li
Yuanwen Gao
GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires
Scientific Reports
author_facet Yingxu Li
Yuanwen Gao
author_sort Yingxu Li
title GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires
title_short GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires
title_full GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires
title_fullStr GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires
title_full_unstemmed GLAG theory for superconducting property variations with A15 composition in Nb3Sn wires
title_sort glag theory for superconducting property variations with a15 composition in nb3sn wires
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-04-01
description Abstract We present a model for the variation of the upper critical field H c2 with Sn content in A15-type Nb-Sn wires, within the Ginzburg-Landau-Abrikosov-Gor’kov (GLAG) theory frame. H c2 at the vicinity of the critical temperature T c is related quantitatively to the electrical resistivity ρ, specific heat capacity coefficient γ and T c. H c2 versus tin content is theoretically formulated within the GLAG theory, and generally reproduces the experiment results. As Sn content gradually approaches the stoichiometry, A15-type Nb-Sn undergoes a transition from the dirty limit to clean limit, split by the phase transformation boundary. The H-T phase boundary and pinning force show different behaviors in the cubic and tetragonal phase. We dipict the dependence of the composition gradient on the superconducting properties variation in the A15 layer, as well as the curved tail at vicinity of H c2 in the Kramer plot of the Nb3Sn wire. This helps understanding of the inhomogeneous-composition inducing discrepancy between the results by the state-of-art scaling laws and experiments.
url https://doi.org/10.1038/s41598-017-01292-4
work_keys_str_mv AT yingxuli glagtheoryforsuperconductingpropertyvariationswitha15compositioninnb3snwires
AT yuanwengao glagtheoryforsuperconductingpropertyvariationswitha15compositioninnb3snwires
_version_ 1724392681932587008