Effect of Energy Barrier Distribution on Current-Induced Magnetization Switching with Short Current Pulses짧은 전류 펄스를 이용한 전류 유도 자화 반전에서 에너지 장벽 분포의 효과

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We performed macro-spin simulation studies of the current-induced magnetization reversal of nanomagnetic elements with short current pulses. A special attention was paid to the effect of the energy barrier on the switching current distribution. The switching current and its distribution increase with decreasing the current pulse-width. The relationship between the energy barrier and switching current distribution is described by the Arrhenius-Néel law at a long pulse-width regime. At a regime of short pulse-width, however, the relationship is left unaddressed. The difficulty to address this issue arises because the magnetization switching with a short current pulse is governed not by the thermal activation but by the precession motion. Therefore, an exact formulation for the short pulse regime by solving the Fokker-Plank equation is needed to understand the result.
Publisher
한국자기학회기
Issue Date
2011-04
Language
English
Citation

한국자기학회지, v.21, no.2, pp.48 - 51

ISSN
1598-5385
DOI
10.4283/JKMS.2011.21.2.048
URI
http://hdl.handle.net/10203/277353
Appears in Collection
PH-Journal Papers(저널논문)
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