Unconventional crystal field splitting in non-centrosymmetric BaTiO thin films
arXiv:1908.07194 · doi:10.1103/PhysRevMaterials.4.024413
Abstract
Understanding the crystal field splitting and orbital polarization in non-centrosymmetric systems such as ferroelectric materials is fundamentally important. In this study, taking BaTiO (BTO) as a representative material we investigate titanium crystal field splitting and orbital polarization in non-centrosymmetric TiO octahedra with resonant X-ray linear dichroism at Ti -edge. The high-quality BaTiO thin films were deposited on DyScO (110) single crystal substrates in a layer-by-layer way by pulsed laser deposition. The reflection high-energy electron diffraction (RHEED) and element specific X-ray absorption spectroscopy (XAS) were performed to characterize the structural and electronic properties of the films. In sharp contrast to conventional crystal field splitting and orbital configuration (/ or / ) according to Jahn-Teller effect, it is revealed that , , and orbitals are nearly degenerate, whereas and orbitals are split with an energy gap 100 meV in the epitaxial BTO films. The unexpected degenerate states // are coupled to Ti-O displacements resulting from competition between polar and Jahn-Teller distortions in non-centrosymmetric TiO octhedra of BTO films. Our results provide a route to manipulate orbital degree of freedom by switching electric polarization in ferroelectric materials.