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Magnetization, Magnetotransport and Ferromagnetic Resonance in A Permalloy Antidot Array with Square Holes

机译:具有方孔的坡莫合金对点阵列中的磁化,磁传输和铁磁共振

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A Permalloy antidot array with square hole size 800×800 nm~2 has been fabricated by the means of electron-beam lithography and lift-off techniques. An out-of-plane anisotropy was found in both the reference film of Permalloy and the antidot array with the thickness of 100 nm. Inhomogeneous current-density distribution and complex domain structures in the antidot nanostructure result in unique behavior of the magnetoresistance. Quantized standing spin-wave modes originating from the lateral confinement of the antidot nanostructure were clearly observed for the magnetic field applied normal to the array plane. Two uniform precession resonance modes occurred when the field deviated more than 30 degrees from the normal to the plane. These two resonances originate from different regions of the array having distinct dipolar field patterns with different orientation and magnitude of magnetostatic field. The easy axes of the anisotropy in these regions are in-plane and orthogonal to each other.
机译:利用电子束光刻和剥离技术,制备了方孔尺寸为800×800 nm〜2的坡莫合金解毒点阵列。在坡莫合金的参考膜和厚度为100 nm的antidot阵列中均发现面外各向异性。在反点纳米结构中不均匀的电流密度分布和复杂的畴结构导致磁阻的独特行为。对于垂直于阵列平面施加的磁场,可以清楚地观察到源自解毒剂纳米结构横向限制的量化自旋自旋波模式。当磁场从法线到平面偏离30度以上时,会出现两种统一的进动共振模式。这两个共振源自具有不同的偶极场模​​式的阵列的不同区域,该不同的偶极场模​​式具有不同的静磁场方向和大小。在这些区域中,各向异性的易轴为面内且彼此正交。

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