2004
DOI: 10.1142/s0218625x04006244
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Scattering and Localization of Spin Waves in Quasi-2d Heisenberg Ferromagnets With Extended Flat Interface Boundaries

Abstract: The influence of extended flat interface boundaries on the scattering and localization of spin waves in disordered quasi-two-dimensional Heisenberg ferromagnets is studied. The two ferromagnets are considered as two dissimilar semi-infinite slabs in contact, joined together at an extended flat interface between two adjacent planes. The mathematical framework of the matching method is used to analyze both the localization and the scattering phenomena on the extended flat interface boundaries in the harmonic app… Show more

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Cited by 6 publications
(1 citation statement)
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“…The understanding of coherent electronic transport in the mesoscopic regime has been 2 ISRN Condensed Matter Physics provided by the formalism of Landauer [21] and Büttiker [22] for electron transport in mesoscopic systems, who related the conductance of the system to its scattering matrix. Multiple scattering and quantum interference phenomena are not limited, however, to the electronic transport, but in a variety of problems they can become important for the coherent transport of other types of excitations such as phonons [23,24] and magnons [25,26] in low-dimensional systems.…”
Section: Introductionmentioning
confidence: 99%
“…The understanding of coherent electronic transport in the mesoscopic regime has been 2 ISRN Condensed Matter Physics provided by the formalism of Landauer [21] and Büttiker [22] for electron transport in mesoscopic systems, who related the conductance of the system to its scattering matrix. Multiple scattering and quantum interference phenomena are not limited, however, to the electronic transport, but in a variety of problems they can become important for the coherent transport of other types of excitations such as phonons [23,24] and magnons [25,26] in low-dimensional systems.…”
Section: Introductionmentioning
confidence: 99%