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Electronic properties of LaO1− xFxFeAs in the normal state probed by NMR/NQR (CROSBI ID 148643)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Grafe, H.-J. ; Lang, G. ; Hammerath, F. ; Paar, Dalibor ; Manthey, K. ; Koch, K. ; Rosner, H. ; Curro, N. J. ; Behr, G. ; Werner, J. et al. Electronic properties of LaO1− xFxFeAs in the normal state probed by NMR/NQR // New journal of physics, 11 (2009), 035002-1-035002-14. doi: 10.1088/1367-2630/11/3/035002

Podaci o odgovornosti

Grafe, H.-J. ; Lang, G. ; Hammerath, F. ; Paar, Dalibor ; Manthey, K. ; Koch, K. ; Rosner, H. ; Curro, N. J. ; Behr, G. ; Werner, J. ; Leps, N. ; Klingeler, R. ; Klaus, H.-H. ; Litterst, F. J. ; Büchner, B.

engleski

Electronic properties of LaO1− xFxFeAs in the normal state probed by NMR/NQR

We report 139La, 57Fe and 75As nuclear magnetic resonance (NMR)and nuclear quadrupole resonance (NQR) measurements on powders of the new LaO1− xFxFeAs superconductor for x = 0 and 0.1 at temperatures up to 480 K, and compare our measured NQR spectra with local density approximation(LDA) calculations. For all three nuclei in the x = 0.1 material, it is found that the local Knight shift increases monotonically with an increase in temperature, and scales with the macroscopic susceptibility, suggesting a single magnetic degree of freedom. Surprisingly, the spin lattice relaxation rates for all nuclei also scale with one another, despite the fact that the form factors for each site sample different regions of q-space. This result suggests a lack of any q- space structure in the dynamical spin susceptibility that might be expected in the presence of antiferromagnetic correlations. Rather, our results are more compatible with simple quasi-particle scattering. Furthermore, we find that the increase in the electric field gradient at the As cannot be accounted for by LDA calculations, suggesting that structural changes, in particular the position of the As in the unit cell, dominate the NQR response.

ferropnictides; NMR; NQR; superconductivity; 57Fe; 75As

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Podaci o izdanju

11

2009.

035002-1-035002-14

objavljeno

1367-2630

10.1088/1367-2630/11/3/035002

Povezanost rada

Fizika

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