Raman scattering in a two-layer antiferromagnet
Abstract
Two--magnon Raman scattering is a useful tool to verify recent suggestions concerning the value of the interplanar exchange constant in antiferromagnetic two--layer systems, such as . We present a theory for Raman scattering in a two--layer antiferromagnet. We study the spectra for the electronic and magnetic excitations across the charge transfer gap within the one--band Hubbard model and derive the matrix elements for the Raman scattering cross section in a diagrammatic formalism. We analyze the effect of the interlayer exchange coupling for the Raman spectra in and scattering geometries both in the non--resonant regime (when the Loudon--Fleury model is valid), and at resonance. We show that within the Loudon--Fleury approximation, a nonzero gives rise to a finite signal in scattering geometry. Both, in this approximation and at resonance, the intensity in the channel has a peak at {\it small} transferred frequency equal to twice the gap in the spin--wave spectrum. We compare our results with experiments in and compounds and argue that the large value of suggested in a number of recent studies is incompatible with Raman experiments in geometry.
Cite
@article{arxiv.cond-mat/9512131,
title = {Raman scattering in a two-layer antiferromagnet},
author = {Dirk K. Morr and Andrey V. Chubukov and Arno P. Kampf and G. Blumberg},
journal= {arXiv preprint arXiv:cond-mat/9512131},
year = {2009}
}
Comments
34 pages, Revtex file, 8 figures in a uuencoded, gziped tar file. The figures are also available upon request