arXiv · 2608.23510
Large Jahn-Teller shifts and splittings observed in halide perovskite CsPbBr3
Abstract
Despite the fundamental role of Jahn-Teller effects of first and second order in shaping structural and electronic properties, there is hardly any observation in angle-resolved photoemission of solids. In oxide and halide perovskites, band structure replicas have occasionally been reported as fingerprints of Jahn-Teller effects, but no accompanying energy shifts or splittings that would allow a conclusion about their origin. In CsPbBr3, we uncover both key signatures: Upon cooling, orthorhombic replica bands emerge which had eluded earlier studies. This includes an extra valence band maximum at {\Gamma} which can even be distinguished at room temperature. Most importantly, band narrowing along {\Gamma}-M, a splitting at {\Gamma}, and the lifting of degeneracy between nonequivalent M points, all of several 100 meV, become apparent. Temperature-dependent x-ray diffraction, used as input for band structure calculations, links these effects directly to tilts and rotations of the PbBr6 octahedra. Our results uncover a strong electron-lattice interaction which is at the heart of so-far unresolved questions concerning polaronic transport, dynamic disorder, and exciton trapping in halide perovskites.
Explore related subjects
Keep this discovery
Maryam Sajedi, Maxim Krivenkov, Dmitry Marchenko, Saleem Ayaz Khan, Andrei Varykhalov, Jaime Sánchez-Barriga, Daniel M. Többens, Thomas Unold, Ján Minár, Oliver Rader. 2026-08-24. Large Jahn-Teller shifts and splittings observed in halide perovskite CsPbBr3. https://arxiv.org/abs/2608.23510
Cite the original work for its findings. Save a collection to share your selection of sources.