Orbital-Peierls State in NaTiSi2O6
Strongly Correlated Electrons
2015-06-29 v2
Abstract
Does the quasi one-dimensional titanium pyroxene NaTiSi2O6 exhibit the novel {\it orbital-Peierls} state? We calculate its groundstate properties by three methods: Monte Carlo simulations, a spin-orbital decoupling scheme and a mapping onto a classical model. The results show univocally that for the spin and orbital ordering to occur at the same temperature --an experimental observation-- the crystal field needs to be small and the orbitals are active. We also find that quantum fluctuations in the spin-orbital sector drive the transition, explaining why canonical bandstructure methods fail to find it. The conclusion that NaTiSi2O6 shows an orbital-Peierls transition is therefore inevitable.
Keywords
Cite
@article{arxiv.cond-mat/0512591,
title = {Orbital-Peierls State in NaTiSi2O6},
author = {Jasper van Wezel and Jeroen van den Brink},
journal= {arXiv preprint arXiv:cond-mat/0512591},
year = {2015}
}
Comments
4 pages, 3 figures