Dynamics of magnetization switching of exchange-coupled trilayers by using a micromagnetic simulation

  • Kim, K. S.
  • Lee, H. J.
  • Lim, S. H.
Citations

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초록

A micromagnetic simulation of the dynamics of magnetization switching is performed in exchange-coupled trilayers consisting of two ferromagnetic layers separated by a very thin non-magnetic spacer. The elliptical magnetic thin films with lateral dimensions of 200 run (long axis) x 100 nm (short axis) and with a total magnetic layer thickness of 4 nm are considered. The spin-flop field and the saturation field obtained under static conditions are found to vary significantly with the thickness asymmetry, but a much smaller dependence is observed in the direct write field. The dynamics of magnetization switching is characterized by an abrupt, coherent rotation, followed by oscillations that eventually die out at a pulse duration time of 10 similar to 20 ns, depending oil the magnetization component and the final magnetic state. The coherent rotation occurs at a short pulse duration time of 1 similar to 2 ns. The oscillations in the two magnetic layers are completely in phase and the frequency estimated from a Fourier analysis is 1.0 GHz. A large difference in the dynamic switching behavior is also observed to exist, depending on the final magnetic state.

키워드

dynamics of magnetization switchingexchange-coupled trilayersmagnetic random access memorymicromagnetic simulationREVERSAL
제목
Dynamics of magnetization switching of exchange-coupled trilayers by using a micromagnetic simulation
저자
Kim, K. S.Lee, H. J.Lim, S. H.
DOI
10.3938/jkps.53.1492
발행일
2008-09
유형
Article; Proceedings Paper
저널명
Journal of the Korean Physical Society
53
3
페이지
1492 ~ 1497