Theory of induced quadrupolar order in tetragonal YbRu_{2}Ge_{2}
Abstract
The tetragonal compound YbRuGe exhibits a non-magnetic transition at =10.2K and a magnetic transition at =6.5K in zero magnetic field. We present a model for this material based on a quasi-quartet of Yb crystalline electric field (CEF) states and discuss its mean field solution. Taking into account the broadening of the specific heat jump at for magnetic field perpendicular to [001] and the decrease of with magnetic field parallel to [001], it is shown that ferro-quadrupole order of either O or O - type are prime candidates for the non-magnetic transition. Considering the matrix element of these quadrupole moments, we show that the lower CEF states of the level scheme consist of a and a doublet. This leads to induced type of O and O quadrupolar order parameters. The quadrupolar order introduces exchange anisotropy for planar magnetic moments. This causes a spin flop transition at low fields perpendicular [001] which explains the observed metamagnetism. We also obtain a good explanation for the temperature dependence of magnetic susceptibility and specific heat for fields both parallel and perpendicular to the [001] direction.
Keywords
Cite
@article{arxiv.0708.2872,
title = {Theory of induced quadrupolar order in tetragonal YbRu_{2}Ge_{2}},
author = {Tetsuya Takimoto and Peter Thalmeier},
journal= {arXiv preprint arXiv:0708.2872},
year = {2009}
}
Comments
13 pages, 6 figures, and 5 tables. published in PRB