Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure

It is demonstrated that the temporal evolution of a spin-wave induced inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure is distinctly different from that of the directly excited (microwave pulse driven) spin-wave mode from which it originates. The differences in te...

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Main Authors: Jungfleisch, M, Chumak, A, Vasyuchka, V, Serga, A, Obry, B, Schultheiss, H, Beck, P, Karenowska, A, Saitoh, E, Hillebrands, B
Format: Journal article
Language:English
Published: 2011
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author Jungfleisch, M
Chumak, A
Vasyuchka, V
Serga, A
Obry, B
Schultheiss, H
Beck, P
Karenowska, A
Saitoh, E
Hillebrands, B
author_facet Jungfleisch, M
Chumak, A
Vasyuchka, V
Serga, A
Obry, B
Schultheiss, H
Beck, P
Karenowska, A
Saitoh, E
Hillebrands, B
author_sort Jungfleisch, M
collection OXFORD
description It is demonstrated that the temporal evolution of a spin-wave induced inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure is distinctly different from that of the directly excited (microwave pulse driven) spin-wave mode from which it originates. The differences in temporal behavior provide compelling evidence that incoherent secondary spin-wave modes, having a range of different characteristic lifetimes, make an important contribution to spin pumping at the insulator-metal interface. © 2011 American Institute of Physics.
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spelling oxford-uuid:cd98e442-82ba-405f-bb37-46a6901def942022-03-27T07:29:47ZTemporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structureJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:cd98e442-82ba-405f-bb37-46a6901def94EnglishSymplectic Elements at Oxford2011Jungfleisch, MChumak, AVasyuchka, VSerga, AObry, BSchultheiss, HBeck, PKarenowska, ASaitoh, EHillebrands, BIt is demonstrated that the temporal evolution of a spin-wave induced inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure is distinctly different from that of the directly excited (microwave pulse driven) spin-wave mode from which it originates. The differences in temporal behavior provide compelling evidence that incoherent secondary spin-wave modes, having a range of different characteristic lifetimes, make an important contribution to spin pumping at the insulator-metal interface. © 2011 American Institute of Physics.
spellingShingle Jungfleisch, M
Chumak, A
Vasyuchka, V
Serga, A
Obry, B
Schultheiss, H
Beck, P
Karenowska, A
Saitoh, E
Hillebrands, B
Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure
title Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure
title_full Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure
title_fullStr Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure
title_full_unstemmed Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure
title_short Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure
title_sort temporal evolution of inverse spin hall effect voltage in a magnetic insulator nonmagnetic metal structure
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