吃豆形Ni80Fe20元件横向尺寸对磁化反转的依赖性

J. Jabal, Y. Hong, B. Choi, H. Han, S. Gee, G. Abo, J. Hass, G. Donohoe
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引用次数: 0

摘要

采用微磁模拟方法研究了细长吃豆人(EPM)形状Ni80Fe20薄膜上的小图样亚微米和微米尺度磁性元件的磁化结构和开关机理。细长吃豆人单元横向尺寸的减小减少了畴壁形成的可能性,从而提高了切换速度。然而,对于较小的元件,由于提供给元件以实现反转的高能量,磁化环增强。从对椭圆Ni80Fe20元素进行的其他微磁研究中可以看出,由于薄膜厚度减少到3.2 nm,发现环被抑制了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lateral Size Dependence of Pac-man shaped Ni80Fe20 Element on Magnetization Reversal
The magnetization configuration and switching mechanism of small patterned submicron and micron scaled magnetic elements of Ni80Fe20 thin film having the elongated Pac-man (EPM) shape is performed using micromagnetic simulation. The reduction of lateral size of elongated Pac-man elements decreases the possibility of domain wall formation, which results in increasing the switching speed. However, the magnetization ringing is enhanced for smaller elements due to the high energy supplied to the element to achieve the reversal. The ringing is found to be suppressed from the reduction in the thickness of the thin film to 3.2 nm as seen from other micromagnetic studies performed on elliptical Ni80Fe20 elements.
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