Room temperature local nematicity in FeSe superconductor
arXiv:1902.08732 · doi:10.1103/PhysRevB.100.020501
Abstract
We report pair distribution function measurements of the iron-based superconductor FeSe above and below the structural transition temperature. Structural analysis reveals a local orthorhombic distortion with a correlation length of about 4 nm at temperatures where an average tetragonal symmetry is observed. The analysis further demonstrates that the local distortion is larger than the distortion at temperatures where the average observed symmetry is orthorhombic. Our results suggest that the low-temperature macroscopic nematic state in FeSe forms from an imperfect ordering of orbital-degeneracy-lifted nematic fluctuations which persist up to at least 300 K.
6 pages, 4 figures
References in corpus (10)
- PDFgetX3: A rapid and highly automatable program for processing powder diffraction data into total scattering pair distribution functions
- The Structural Phase Transition in FeSe (Fe1+dSe)
- Orbital-driven nematicity in FeSe
- Lifting of xz/yz orbital degeneracy at the structural transition in detwinned FeSe
- Nematicity, magnetism and superconductivity in FeSe
- Observation of two distinct band splittings in FeSe
- Synthesis, crystal structure and magnetism of beta-Fe1.00(2)Se1.00(3) single crystals
- Emergence of Orbital Nematicity in the Tetragonal Phase of BaFe(AsP)
- NMR evidence for static local nematicity and its cooperative interplay with low-energy magnetic fluctuations in FeSe under pressure
- Photoinduced ultrafast dynamics of local nematicity and lattice distortions in FeSe crystals