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Quantum criticality and nodal superconductivity in the FeAs-based superconductor KFe2As2

Authors :
J K, Dong
S Y, Zhou
T Y, Guan
H, Zhang
Y F, Dai
X, Qiu
X F, Wang
Y, He
X H, Chen
S Y, Li
Source :
Physical review letters. 104(8)
Publication Year :
2010

Abstract

The in-plane resistivity rho and thermal conductivity kappa of the FeAs-based superconductor KFe2As2 single crystal were measured down to 50 mK. We observe non-Fermi-liquid behavior rho(T) approximately T{1.5} at H{c{2}}=5 T, and the development of a Fermi liquid state with rho(T) approximately T{2} when further increasing the field. This suggests a field-induced quantum critical point, occurring at the superconducting upper critical field H{c{2}}. In zero field, there is a large residual linear term kappa{0}/T, and the field dependence of kappa_{0}/T mimics that in d-wave cuprate superconductors. This indicates that the superconducting gaps in KFe2As2 have nodes, likely d-wave symmetry. Such a nodal superconductivity is attributed to the antiferromagnetic spin fluctuations near the quantum critical point.

Details

ISSN :
10797114
Volume :
104
Issue :
8
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid..........30debe66277099fa9c4958dd8931b1ac