English

Magnetic and charge susceptibilities in the half-filled triangular lattice Hubbard model

Strongly Correlated Electrons 2020-03-18 v1

Abstract

We study magnetic and charge susceptibilities in the half-filled two-dimensional triangular Hubbard model within the dual fermion approximation in the metallic, Mott insulating, and crossover regions of parameter space. In the \textcolor{black}{insulating state}, we find strong spin fluctuations at the K point at low energy corresponding to the \textcolor{black}{120^{\circ}} antiferromagnetic order. These spin fluctuations persist into the metallic phase and move to higher energy. We also present data for simulated neutron spectroscopy and \textcolor{black}{spin-lattice} relaxation times, and perform direct comparisons to inelastic neutron spectroscopy experiments on the triangular material Ba8_8CoNb6_6O24_{24} and to the relaxation times on κ\kappa-(ET)2_2Cu2_2(CN)3_3. Finally, we present charge susceptibilities in different areas of parameter space, which should correspond to momentum-resolved electron-loss spectroscopy measurements on triangular compounds.

Keywords

Cite

@article{arxiv.1908.10748,
  title  = {Magnetic and charge susceptibilities in the half-filled triangular lattice Hubbard model},
  author = {Shaozhi Li and Emanuel Gull},
  journal= {arXiv preprint arXiv:1908.10748},
  year   = {2020}
}

Comments

6 pages, 5 figures