Effect of Enhanced Damping Due to Spin-Motive Force on Field-Driven Domain Wall Motion

  • Moon, Jung-Hwan
  • Seo, Soo-Man
  • Lee, Kyung-Jin
Citations

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초록

Temporal and spatial variation of magnetization generates an additional damping torque due to spin-motive force. We performed semi-one-dimensional (1-D) and two-dimensional (2-D) micromagnetic simulations to investigate effect of the additional damping on the field-driven transverse wall dynamics in a magnetic nanowire. At the magnetic field above the Walker breakdown field, the additional damping due to the spin-motive force causes an increase of domain wall velocity. In semi-1-D model, the amount of increased domain wall velocity is linearly proportional to the external magnetic field as predicted by theory. However, in 2-D model, it is inversely proportional to the field owing to the periodic injection of antivortex.

키워드

Domain wall motionGilbert dampingmicromagnetic simulationspin-motive force
제목
Effect of Enhanced Damping Due to Spin-Motive Force on Field-Driven Domain Wall Motion
저자
Moon, Jung-HwanSeo, Soo-ManLee, Kyung-Jin
DOI
10.1109/TMAG.2010.2041909
발행일
2010-06
유형
Article
저널명
IEEE Transactions on Magnetics
46
6
페이지
2167 ~ 2170