paper

Scaling theory of magnetic ordering in the Kondo lattices with anisotropic exchange interactions

arXiv:cond-mat/9805390 · doi:10.1103/PhysRevB.59.9348

Abstract

The lowest-order scaling consideration of the magnetic state formation in the Kondo lattices is performed within the model with inclusion of anisotropy for both the coupling and exchange interaction. The Kondo renormalizations of the effective transverse and longitudinal coupling parameters, spin-wave frequency, gap in the magnon spectrum and ordered moment are calculated in the case of both ferro- and antiferromagnets. The anisotropy-driven change of the scaling behavior (e.g., critical value of for entering the strong-coupling region and the corresponding critical exponents) is investigated numerically for N=2 and analytically in the large-N limit. The dependence of the effective Kondo temperature on the bare coupling parameter weakens in the presence of anisotropy. The relative anisotropy parameters for both the and coupling are demonstrated to decrease during the renormalization process. The role of next-nearest exchange interactions for this effect in the antiferromagnet is discussed.

Final version, 24 pages, 6 figures, accepted for publication in Physical Review B, tentatively 1 March 1999

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