Current-induced oscillation of a magnetic domain wall: Effect of damping enhanced by magnetization dynamics

  • Kim, Sang-Il
  • Moon, Jung-Hwan
  • Kim, Woojin
  • Lee, Kyung-Jin
Citations

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11
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13

초록

Based on the Thiele's approach, we investigate current-induced oscillation of a magnetic domain wall. A special attention is paid to effect of damping enhancement due to magnetization dynamics in the limit of no spin diffusion. Unlike for a translation motion, the enhanced damping due to magnetization dynamics has an important role for a rotational motion of a magnetic domain wall and can significantly reduce its oscillation frequency. The frequency reduction becomes more substantial for a narrower domain wall. This result provides a design strategy of high-frequency devices utilizing domain wall oscillation. (C) 2010 Elsevier B.V. All rights reserved.

키워드

SpintronicsSpin motive forceDomain wall oscillationThiele's equationMicromagnetic simulationSPIN-TRANSFER-TORQUETUNNEL-JUNCTIONSVOLTAGE-DEPENDENCEPOLARIZED CURRENTDRIVENMOTIONNANOWIRES
제목
Current-induced oscillation of a magnetic domain wall: Effect of damping enhanced by magnetization dynamics
저자
Kim, Sang-IlMoon, Jung-HwanKim, WoojinLee, Kyung-Jin
DOI
10.1016/j.cap.2010.06.019
발행일
2011-01
유형
Article
저널명
Current Applied Physics
11
1
페이지
61 ~ 64