paper

Theoretical Analysis of the "Double-q" Magnetic Structure of CeAl2

arXiv:cond-mat/0604286 · doi:10.1103/PhysRevB.74.134411

Abstract

A model involving competing short-range isotropic Heisenberg interactions is developed to explain the "double-q" magnetic structure of CeAl. For suitably chosen interactions, terms in the Landau expansion quadratic in the order parameters explain the condensation of incommensurate order at wavevectors in the star of (1/2 , 1/2 , 1/2), where is the cubic lattice constant. We show that the fourth order terms in the Landau expansion lead to the formation of the so-called "double-q" magnetic structure in which long-range order develops simultaneously at two symmetry-related wavevectors, in striking agreement with the magnetic structure determinations. Based on the value of the ordering temperature and of the Curie-Weiss of the susceptibility, we estimate that the nearest neighbor interaction is ferromagnetic, with K and the next-nearest neighbor interaction is antiferromagnetic with K. We also briefly comment on the analogous phenomenon seen in the similar system TmS.

22 pages, 6 figures

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