High Temperature Emissivity, Reflectivity, and X-ray absorption of BiFeO3
arXiv:1009.1773 · doi:10.1063/1.3486515
Abstract
We report on the lattice evolution of BiFeO3 as function of temperature using far infrared emissivity, reflectivity, and X-ray absorption local structure. A power law fit to the lowest frequency soft phonon in the magnetic ordered phase yields an exponent β=0.25 as for a tricritical point. At about 200 K below TN~640 K it ceases softening as consequence of BiFeO3 metastability. We identified this temperature as corresponding to a crossover transition to an order-disorder regime. Above ~700 K strong band overlapping, merging, and smearing of modes are consequence of thermal fluctuations and chemical disorder. Vibrational modes show band splits in the ferroelectric phase as emerging from triple degenerated species as from a paraelectric cubic phase above TC~1090 K. Temperature dependent X-ray absorption near edge structure (XANES) at the Fe K-edge shows that lower temperature Fe3+ turns into Fe2+. While this matches the FeO wüstite XANES profile, the Bi LIII-edge downshift suggests a high temperature very complex bond configuration at the distorted A perovskite site. Overall, our local structural measurements reveal high temperature defect-induced irreversible lattice changes, below, and above the ferroelectric transition, in an environment lacking of long-range coherence. We did not find an insulator to metal transition prior to melting.
Accepted for publication
References in corpus (5)
- First-principles study of spontaneous polarization in multiferroic BiFeO
- The beta Phase of Multiferroic Bismuth Ferrite and its beta-gamma Metal-Insulator Transition
- Origin of magnetoelectric behavior in BiFeO
- The ferroelectric-paraelectric phase transition in BiFeO3: crystal structure of the orthorhombic beta-phase
- Dipole-active optical phonons in YTiO_3: ellipsometry study and lattice-dynamics calculations
Cited by in corpus (5)
- Structure and spin dynamics of multiferroric BiFeO
- Surface phase transitions in BiFeO3 below room temperature
- Spin and lattice excitations of a BiFeO3 thin film and ceramics
- High-Temperature Phonon Spectra of Multiferroic BiFeO3 from Inelastic Neutron Spectroscopy
- Collective Phase-like Mode and the Role of Lattice Distortions at TN~TC in RMn2O5 (R= Pr, Sm, Gd, Tb, Bi)