Crystallographic Phase Transition and High-Tc Superconductivity in LaFeAsO:F
arXiv:0804.3569 · doi:10.1088/0953-2048/21/12/125028
Abstract
Undoped LaFeAsO, parent compound of the newly found high-Tc superconductor, exhibits a sharp decrease in the temperature-dependent resistivity at ~160 K. The anomaly can be suppressed by F doping and the superconductivity appears correspondingly, suggesting a close associate of the anomaly with the superconductivity. We examined the crystal structures, magnetic properties and superconductivity of undoped (normal conductor) and 14 at.% F-doped LaFeAsO (Tc = 20 K) by synchrotron X-ray diffraction, DC magnetic measurements, and ab initio calculations to demonstrate that the anomaly is associated with a phase transition from tetragonal (P4/nmm) to orthorhombic (Cmma) phases at ~160 K as well as an antiferromagnetic transition at ~140 K. These transitions can be explained by spin configuration-dependent potential energy surfaces derived from the ab initio calculations. The suppression of the transitions is ascribed to interrelated effects of geometric and electronic structural changes due to doping by F- ions.
22 pages, 8 figures, 2 tables, Supplementary information is included at the end of the document, accepted for publication in Supercond. Sci. Technol
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- Heteroepitaxial growth and optoelectronic properties of layered iron oxyarsenide, LaFeAsO
- Doping evolution of itinerant magnetic excitations in Fe-based oxypnictides
- One-step atmospheric pressure synthesis of the ground state of Fe based LaFeAsO1-d superconductor