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Phase separation at the magnetic-superconducting transition in La0.7Y0.3FeAsO1-xFx

Authors :
Giacomo Prando
Gianrico Lamura
Toni Shiroka
Matteo Tropeano
Andrea Palenzona
Hans Joachim Grafe
Bernd Buchner
Pietro Carretta
Roberto De Renzi
SANNA, SAMUELE
Giacomo Prando
Samuele Sanna
Gianrico Lamura
Toni Shiroka
Matteo Tropeano
Andrea Palenzona
Hans-Joachim Grafe
Bernd Buchner
Pietro Carretta
Roberto De Renzi
Publication Year :
2013

Abstract

In this paper we report a detailed $\mu^{+}$SR and {}$^{19}$F-NMR study of the La$_{0.7}$Y$_{0.3}$FeAsO$_{1-x}$F$_{x}$ class of materials. Here, the diamagnetic La$_{1-y}$Y$_{y}$ substitution increases chemical pressure and, accordingly, sizeably enhances the optimal superconducting transition temperature. We investigate the magnetic-superconducting phase transition by keeping the Y content constant ($y = 0.3$) and by varying the F content in the range $0.025 \leq x \leq 0.15$. Our results show how magnetism and superconductivity coexist for $x = 0.065$. Such coexistence is due to segregation of the two phases in macroscopic regions, resembling what was observed in LaFeAsO$_{1-x}$F$_{x}$ materials under applied hydrostatic pressure. This scenario is qualitatively different from the nanoscopic coexistence of the two order parameters observed when La is fully substituted by magnetic rare-earth ions like Sm or Ce.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.od......4094..07b99ed7d8aaf780c3f96ad87673b50f