arXiv · 1105.3271
Partial Disorder in the Periodic Anderson Model on a Triangular Lattice
Abstract
We report our theoretical results on the emergence of a partially-disordered state at zero temperature and its detailed nature in the periodic Anderson model on a triangular lattice at half filling. The partially-disordered state is characterized by coexistence of a collinear antiferromagnetic order on an unfrustrated honeycomb subnetwork and nonmagnetic state at the remaining sites. This state appears with opening a charge gap between a noncollinear antiferromagnetic metal and Kondo insulator while changing the hybridization and Coulomb repulsion. We also find a characteristic crossover in the low-energy excitation spectrum as a result of coexistence of magnetic order and nonmagnetic sites. The result demonstrates that the partially-disordered state is observed distinctly even in the absence of spin anisotropy, in marked contrast to the partial Kondo screening state found in the previous study for the Kondo lattice model.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Satoru Hayami, Masafumi Udagawa, Yukitoshi Motome. 2011-05-17. Partial Disorder in the Periodic Anderson Model on a Triangular Lattice. https://doi.org/10.1143/jpsj.80.073704
Cite the original work for its findings. Save a collection to share your selection of sources.