Peierls transition in the quantum spin-Peierls model
Abstract
We use the density matrix renormalization group method to investigate the role of longitudinal quantized phonons on the Peierls transition in the spin-Peierls model. For both the XY and Heisenberg spin-Peierls model we show that the staggered phonon order parameter scales as (and the dimerized bond order scales as ) as (where is the electron-phonon interaction). This result is true for both linear and cyclic chains. Thus, we conclude that the Peierls transition occurs at in these models. Moreover, for the XY spin-Peierls model we show that the quantum predictions for the bond order follow the classical prediction as a function of inverse chain size for small . We therefore conclude that the zero phase transition is of the mean-field type.
Cite
@article{arxiv.cond-mat/0506133,
title = {Peierls transition in the quantum spin-Peierls model},
author = {William Barford and Robert J. Bursill},
journal= {arXiv preprint arXiv:cond-mat/0506133},
year = {2009}
}