Double-exchange model study of multiferroic $R$MnO$_3$ perovskites
Abstract
In this proceeding, recent theoretical investigations by the authors on the multiferroic MnO perovskites are briefly reviewed at first. Using the double-exchange model, the realistic spiral spin order in undoped manganites such as TbMnO and DyMnO is well reproduced by incorporating a weak next-nearest neighbor superexchange ( of nearest neighbor superexchange) and moderate Jahn-Teller distortion. The phase transitions from the A-type antiferromagnet (as in LaMnO), to the spiral phase (as in TbMnO), and finally to the E-type antiferromagnet (as in HoMnO), with decreasing size of the ions, were also explained. Moreover, new results of phase diagram of the three-dimensional lattice are also included. The ferromagnetic tendency recently discovered in the LaMnO and TbMnO thin films is explained by considering the substrate stress. Finally, the relationship between our double-exchange model and a previously used -- model is further discussed from the perspective of spin wave excitations.
Keywords
Cite
@article{arxiv.0906.1269,
title = {Double-exchange model study of multiferroic $R$MnO$_3$ perovskites},
author = {Shuai Dong and Rong Yu and Seiji Yunoki and J. -M. Liu and Elbio Dagotto},
journal= {arXiv preprint arXiv:0906.1269},
year = {2010}
}
Comments
6 pages, 3 figures; Proceeding of the Workshop on Magnetoelectric Interaction Phenomena in Crystals (MEIPIC-6); To be appeared in European Physical Journal B