Magnon damping by magnon-phonon coupling in manganese perovskites

P Dai, HY Hwang, J Zhang, JA Fernandez-Baca… - Physical Review B, 2000 - APS
Physical Review B, 2000APS
Inelastic neutron scattering was used to systematically investigate the spin-wave excitations
(magnons) in ferromagnetic manganese perovskites. In spite of the large differences in the
Curie temperatures (T C's) of different manganites, their low-temperature spin waves have
very similar dispersions with the zone-boundary magnon softening and broadening that
cannot be explained by the canonical double exchange mechanism. From the wave-vector
dependence of the magnon lifetime effects and its correlation with the dispersions of the …
Abstract
Inelastic neutron scattering was used to systematically investigate the spin-wave excitations (magnons) in ferromagnetic manganese perovskites. In spite of the large differences in the Curie temperatures (T C’s) of different manganites, their low-temperature spin waves have very similar dispersions with the zone-boundary magnon softening and broadening that cannot be explained by the canonical double exchange mechanism. From the wave-vector dependence of the magnon lifetime effects and its correlation with the dispersions of the optical-phonon modes, we argue that a strong magnetoelastic (magnon-phonon) coupling is responsible for the observed low-temperature anomalous spin dynamical behavior of the manganites.
American Physical Society
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