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Micromagnetic Simulation on the Interelement Coupling of High-Density Patterned Film

机译:高密度图案膜层间耦合的电磁模拟

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In this paper, the magnetic properties of an individual square permalloy (NiFe) nanoelement at the center of an array with both in-plane shape anisotropy and interelement interaction were investigated by the 3-D object oriented micromagnetic framework. Variation of the interelement coupling was studied by changing the element lateral size () and interelement spacing (). Magnetic hysteresis loop and dependence of saturation field on () of the individual element at the center of array indicate that dipolar interaction dominates the magnetic properties of array with small ( ≤ 1), whereas at > 1, the interelement interaction can be ignored, and therefore, the shape anisotropy plays an important role in determining both the strength and the direction of magnetic moments. Moreover, for small , the global easy axis is along the direction of element edge, and with increasing , the easy axis appears to gradually turn to the diagonal direction. It is noteworthy that the corresponding conversion points of the easy axis on decrease from 0.6 to 0.3 as increasing a from 10 to 20 nm, indicating the effect of interelement coupling is weaker in array with a larger element lateral size. The collective magnetic behavior of array is also investigated for comparison.
机译:在本文中,通过3-D面向对象的微磁框架研究了具有平面内形状各向异性和元素间相互作用的阵列中心的单个方形坡莫合金(NiFe)纳米元素的磁性。通过改变单元的横向尺寸()和单元间距()来研究单元间耦合的变化。磁滞回线和饱和场对位于阵列中心的单个元素的()的依赖性表明,偶极相互作用以较小的(≤1)主导了阵列的磁性,而在> 1,则可以忽略元素间的相互作用,并且因此,形状各向异性在确定磁矩的强度和方向方面都起着重要作用。此外,对于小,全局易轴沿元素边缘的方向,并且随着增加,易轴似乎逐渐转向对角线方向。值得注意的是,易轴的相应转换点随着a从10到20 nm的增加而从0.6减少到0.3,这表明元素横向耦合的影响在具有较大元素横向尺寸的阵列中较弱。还研究了阵列的集体磁性能以进行比较。

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