Quadrupole Orders on the fcc Lattice
Abstract
We theoretically study electric quadrupole orders in f-electron systems on the fcc lattice. Qudrupole degrees of freedom and originate in the non-Kramers doublet ground state of ion with electron configuration. For discussing quadrupole orders, we use a minimal model with isotropic () and anisotropic () nearest-neighbor interactions, and determine the phase diagram using a four-site mean-field approximation at zero and finite temperatures. Quadrupoles couple the doublet to the singlet excited state , and its effects on canting antiferro orders are examined in detail. We found that this coupling leads to a rich phase diagram including two- and four-sublattice antiferro phases, and that two phases show a partial order of quadrupoles at finite temperatures.
Keywords
Cite
@article{arxiv.2102.06346,
title = {Quadrupole Orders on the fcc Lattice},
author = {Hirokazu Tsunetsugu and Takayuki Ishitobi and Kazumasa Hattori},
journal= {arXiv preprint arXiv:2102.06346},
year = {2021}
}