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The intrinsic electronic phase diagram of iron-pnictide superconductors (CROSBI ID 554171)

Prilog sa skupa u zborniku | sažetak izlaganja sa skupa

Hess, C. ; Kondrat, A. ; Narduzzo, A. ; Hamann-Borrero, J. E. ; Klingeler, R. ; Grafe, H. ; Lang, G. ; Hammerath, F. ; Paar, Dalibor ; Alfonsov, A. et al. The intrinsic electronic phase diagram of iron-pnictide superconductors. 2009

Podaci o odgovornosti

Hess, C. ; Kondrat, A. ; Narduzzo, A. ; Hamann-Borrero, J. E. ; Klingeler, R. ; Grafe, H. ; Lang, G. ; Hammerath, F. ; Paar, Dalibor ; Alfonsov, A. ; Kataev, V. ; Werner, J. ; Behr, G. ; Büchner, B

engleski

The intrinsic electronic phase diagram of iron-pnictide superconductors

We present a detailed study of the intrinsic electronic phase diagram of the oxypnictide superconductors in the normal state based on the analysis of the electrical resistivity _ of both LaO1− xFxFeAs and SmO1− xFxFeAs for a wide range of doping. Our data give clear-cut evidence for unusual normal state properties in these new materials. As a function of doping _ of LaO1− xFxFeAs shows a clear transition from pseudogap to Fermi liquid-like behavior, mimicking the phase diagram of the cuprates. Moreover, our data reveal a correlation between the strength of the pseudogap signatures and the stability of the superconducting phase. The pseudogap signatures, which are clearly connected with the structural and magnetic transitions of the parent material, become stronger in SmO1− xFxFeAs where superconductivity is enhanced and vanish when superconductivity is reduced in the doping region with Fermi liquid-like behavior. We further present evidence for the connection between the pseudogap signatures in electrical transport and the slowing-down of spin fluctuation.

iron-pnictide; superconductivity

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Podaci o prilogu

2009.

objavljeno

Podaci o matičnoj publikaciji

Podaci o skupu

Verhandlungen der Deutschen Physikalischen Gesellschaft

predavanje

22.03.2009-27.03.2009

Dresden, Njemačka

Povezanost rada

Fizika