English

Magnetic excitations, phase diagram and order-by-disorder in the extended triangular-lattice Hubbard model

Strongly Correlated Electrons 2023-03-01 v2

Abstract

The dynamical structure factor is an important observable of quantum magnets but due to numerical and theoretical limitations, it remains a challenge to make predictions for Hubbard-like models beyond one dimension. In this work, we study the magnetic excitations of the triangular lattice Hubbard model including next-nearest neighbor hopping. Starting from the 120^{\circ} and stripe magnetic orders we compute the magnon spectra within a self-consistent random phase approximation. In the stripe phase, we generically find accidental zero modes related to a classical degeneracy known from the corresponding J1J_1-J2J_2 Heisenberg model. We extend the order-by-disorder mechanism to Hubbard systems and show how quantum fluctuations stabilize the stripe order. In addition, the frustration-induced condensation of magnon modes allows us to map out the entire phase diagram which is in remarkable agreement with recent numerical works. We discuss connections to experiments on triangular lattice compounds and the relation of our results to the proposed chiral spin liquid phase.

Keywords

Cite

@article{arxiv.2211.03654,
  title  = {Magnetic excitations, phase diagram and order-by-disorder in the extended triangular-lattice Hubbard model},
  author = {Josef Willsher and Hui-Ke Jin and Johannes Knolle},
  journal= {arXiv preprint arXiv:2211.03654},
  year   = {2023}
}

Comments

10 pages, 6 figures