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Phys. Rev. B 79, 214412 (2009) [7 pages]

Spin-signal propagation in time-dependent noncollinear spin transport

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Yao-Hui Zhu*, Burkard Hillebrands, and Hans Christian Schneider
Department of Physics and Research Center OPTIMAS, University of Kaiserslautern, 67653 Kaiserslautern, Germany

Received 6 January 2009; revised 15 May 2009; published 10 June 2009

Using a macroscopic analysis, we investigate the signal propagation in time-dependent noncollinear spin transport through magnetic multilayers. As in the collinear case, we find a wavelike character in addition to its diffusive character, which allows one to extract a finite spin-signal-propagation velocity. We numerically study the dynamics of a pure spin current pumped into a nonmagnetic layer by a precessing magnetization in an adjacent ferromagnetic layer for precession frequencies ranging from GHz to THz. The wave character of spin transport produces deviations from pure spin-diffusion dynamics for modulation frequencies of several 10 GHz. In this frequency range, the polarization of the pumped spin current is still approximately parallel to the injected spin at the interface at all times. Above 100 GHz, the wave character of the spin current becomes obvious because the polarization is no longer parallel to the injected spin.

© 2009 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.79.214412
DOI:
10.1103/PhysRevB.79.214412
PACS:
72.25.Ba, 73.40.Jn, 75.47.−m, 85.75.−d

*yaohuizhu@gmail.com

http://www.physik.uni-kl.de/schneider