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Spin Ordering in LaFeAsO and Its Suppression in Superconductor LaFeAsO0.89F0.11 Probed by Mossbauer Spectroscopy

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PHYSICAL SOC JAPAN
DOI: 10.1143/JPSJ.77.103706

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Fe-57 Mossbauer spectroscopy; LaFeAsO; LaFeAsO1-xFx; F doping; superconductivity; magnetic moment

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Fe-57 Mossbauer spectroscopy was applied to an iron-based layered superconductor LaFeAsO0.89F0.11 with a transition temperature of 26 K and to its parent material LaFeAsO. Throughout the temperature range from 4.2 to 298 K, a singlet pattern with no magnetic splitting was observed in the Mossbauer spectrum of the F-doped superconductor. Furthermore, no additional internal magnetic field was observed for the spectrum measured at 4.2 K under a magnetic field of 7 T. On the other hand, magnetically split spectra were observed in the parent LaFeAsO below 140 K, and this temperature is slightly lower than that of a structural phase transition from tetragonal to orthorhombic phase, which accompanies the electrical resistivity anomaly at around 150 K The magnetic moment is estimated to be similar to 0.35 mu(B)/Fe from the internal magnetic field of 5.3 T at 4.2 K in the orthorhombic phase, and the spin disorder appears to remain in the magnetically ordered state even at 4.2 K. The lack of a magnetic transition in LaFeAsO0.89F0.11 down to 4.2 K Suggests that this system exhibits a paramagnetic state or that the magnetic moment is small. The present results show that F doping effectively suppresses the magnetic and structural transitions in the parent material, leading to the emergence of superconductivity in the F-doped system.

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