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Size dependence of static and dynamic magnetic properties in nanoscale square Permalloy antidot arrays

机译:纳米级方形坡莫合金解毒剂阵列中静态和动态磁性能的尺寸依赖性

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摘要

Permalloy antidot arrays with different square hole sizes (1200 X 1200, 800 X 800, and 400 X 400 nm~2) have been fabricated by means of electron-beam lithography and lift-off techniques. The smaller square hole size results in enhanced remanence and reduced coercivity in the antidot array. Multiple resonance modes were clearly observed for the magnetic field applied normal to the array plane, and double uniform resonance modes occurred when the field deviated more than 30° from the normal to the plane. Two distinct dipolar field patterns with different orientations and magnitudes split the uniform resonance into double resonance modes. The double resonance modes show uniaxial in-plane anisotropy and the easy axes are orthogonal. The magnitude of the induced dipolar anisotropy remains almost constant with changes in the square hole size. The double resonance peaks move to low field with reduction of the square hole size.
机译:通过电子束光刻和剥离技术已经制造出具有不同方孔尺寸(1200 X 1200、800 X 800和400 X 400 nm〜2)的坡莫合金解毒点阵列。较小的方孔尺寸可提高解毒剂阵列的剩磁和矫顽力。对于垂直于阵列平面施加的磁场,可以清楚地观察到多个共振模式,并且当磁场从垂直于平面的平面偏离30°以上时,会出现双重均匀共振模式。具有不同方向和大小的两个不同的偶极场模​​式将均匀共振分为双共振模式。双共振模式显示单轴面内各向异性,易轴正交。随着方孔尺寸的变化,感应偶极各向异性的大小几乎保持恒定。随着方孔尺寸的减小,双共振峰移至低磁场。

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