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dc.contributor.authorTserkovnyak, Yaroslaveng
dc.contributor.authorHankiewicz, E. M.eng
dc.contributor.authorVignale, Giovanni, 1957-eng
dc.date.issued2009eng
dc.descriptionURL:http://link.aps.org/doi/10.1103/PhysRevB.79.094415 DOI:10.1103/PhysRevB.79.094415eng
dc.description.abstractWe discuss the dissipative diffusion-type term of the form m×∇2∂tm in the phenomenological Landau-Lifshitz equation of ferromagnetic precession, which describes enhanced Gilbert damping of finite-momentum spin waves. This term arises physically from itinerant-electron spin flows through a perturbed ferromagnetic configuration and can be understood to originate in the ferromagnetic spin pumping in the continuum limit. We develop a general phenomenology as well as provide microscopic theory for the Stoner and s-d models of ferromagnetism, taking into account disorder and electron-electron scattering. The latter is manifested in our problem through the Coulomb drag between the spin bands. The spin diffusion coefficient is identified with the transverse spin conductivity, in analogy with the Einstein relation in the kinetic theory.eng
dc.description.sponsorshipWe are grateful to Gerrit E. W. Bauer and Arne Brataas for stimulating discussions. This work was supported in partby the Alfred P. Sloan Foundation Y.T. and NSF Grant No. DMR-0705460 G.V. .eng
dc.identifier.citationPhys. Rev. B 79, 094415 (2009) [11 pages]eng
dc.identifier.issn1098-0121eng
dc.identifier.urihttp://hdl.handle.net/10355/7672eng
dc.languageEnglisheng
dc.publisherAmerican Physical Societyeng
dc.relation.ispartofcollectionUniversity of Missouri--Columbia. College of Arts and Sciences. Department of Physics and Astronomy. Physics and Astronomy publicationseng
dc.subjectspin polarized transporteng
dc.subjectferromagnetic, antiferromagnetic, and ferrimagnetic resonanceseng
dc.subjectspin-wave resonanceeng
dc.subject.lcshSpin waveseng
dc.subject.lcshResonanceeng
dc.subject.lcshElectron transporteng
dc.subject.lcshSpintronicseng
dc.subject.lcshPolarization (Nuclear physics)eng
dc.subject.lcshFerromagnetic resonanceeng
dc.subject.lcshAntiferromagnetismeng
dc.subject.lcshFerrimagnetismeng
dc.titleTransverse spin diffusion in ferromagnetseng
dc.typeArticleeng


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