arXiv · 2404.17635
Charge density-waves with non-trivial orbital textures in rare earth tritellurides
Abstract
Motivated by recent experiments reporting unconventional collective modes in the charge density-wave (CDW) state of rare-earth tritellurides $R$Te$_3$, we derive from a multi-orbital microscopic model on the square net a CDW Ginzburg-Landau theory that allows for non-trivial orbital order. Our analysis reveals unconventional CDWs where order parameters with distinct orbital character coexist due to an approximate symmetry of the low-energy model, which becomes exact in the limit of nearest-neighbor-only hopping and decoupled $p_x$, $p_y$ orbitals. Because of this coexistence, the resulting CDW pattern displays an orbital texture that generally breaks additional symmetries of the lattice besides those explicitly broken by the CDW wave-vector. In particular, we find two competing phases that differ in whether they break or preserve inversion and vertical mirror symmetries. We explain the mechanisms that favor each outcome, and discuss experimental probes that can distinguish the different phases.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sergey Alekseev, Sayed Ali Akbar Ghorashi, Rafael M. Fernandes, Jennifer Cano. 2024-04-26. Charge density-waves with non-trivial orbital textures in rare earth tritellurides. https://arxiv.org/abs/2404.17635
Cite the original work for its findings. Save a collection to share your selection of sources.