Optical spectroscopy on the photo-response in multiferroic BiFeO at high pressure
arXiv:1910.05009 · doi:10.1063/1.5125741
Abstract
The pressure dependence of light-induced effects in single-crystalline BiFeO is studied by optical spectroscopy. At low pressures, we observe three light-induced absorption features with energies just below the two crystal field excitations and the absorption onset, respectively. These absorption features were previously ascribed to excitons, possibly connected with the ultra-fast photostriction effect in BiFeO. The pressure-induced redshift of the absorption features follows the pressure dependence of the corresponding crystal field excitations and absorption onset, suggesting the link between them. Above the structural phase transition at GPa the three absorption features disappear, suggesting their connection to the polar phase in BiFeO. The pressure-induced disappearance of the photo-induced features is irreversible upon pressure release.
7 pages, 7 figures; accepted for publication in the Journal of Applied Physics
References in corpus (6)
- First-principles study of spontaneous polarization in multiferroic BiFeO
- Very large spontaneous electric polarization in BiFeO3 single crystals at room temperature and its evolution under cycling fields
- Light-induced size changes in BiFeO3 crystals
- Linear and Nonlinear Optical constants of BiFeO_3
- High-pressure phase transitions in BiFeO3: hydrostatic vs. non-hydrostatic conditions
- Temperature-dependent photo-response in multiferroic BiFeO revealed by transmission measurements