Lifshitz Transition in Triangular Lattice Kondo-Heisenberg Model
Abstract
Motivated by recent experimental progress on triangular lattice heavy-fermion compounds, we investigate possible Lifshitz transitions and the scanning tunnel microscope (STM) spectra of the Kondo-Heisenberg model on the triangular lattice. In the heavy Fermi liquid state, the introduced Heisenberg antiferromagnetic interaction () results in the twice Lifshitz transition at the case of the nearest-neighbour electron hopping but with next-nearest-neighbour hole hopping and the case of the nearest-neighbour hole hopping but with next-nearest-neighbour electron hopping, respectively. Driven by , the Lifshitz transitions on triangular lattice are all continuous in contrast to the case in square lattice. Furthermore, the STM spectra shows rich line-shape which is influenced by the Kondo coupling , and the ratio of the tunneling amplitude versus . Our work provides a possible scenario to understand the Fermi surface topology and the quantum critical point in heavy-fermion compounds.
Keywords
Cite
@article{arxiv.2003.02403,
title = {Lifshitz Transition in Triangular Lattice Kondo-Heisenberg Model},
author = {Lan Zhang and Hong-Gang Luo and Yin Zhong},
journal= {arXiv preprint arXiv:2003.02403},
year = {2020}
}
Comments
7 pages, 10 figures