论文标题
COFEB/RU/COFEB合成反铁磁铁中的交换能量
Exchange energies in CoFeB/Ru/CoFeB Synthetic Antiferromagnets
论文作者
论文摘要
层间交换耦合将特定的特性与合成反铁磁体赋予了特定特性,使它们适合于多种旋转型的应用。这种磁性构型的有效使用需要深入了解磁性及其与材料结构的相关性。在这里,我们建立了一个可靠的程序,以量化合成抗铁磁体中的层间交换耦合和内部交换刚度;我们将其应用于Ultrasmooth和无形的CO $ _ {40} $ fe $ _ {40} $ b $ _ {20} $(5-40 nm)/ ru/ ru/ co $ _ {40} $ _ {40} $ fe $ _ {40} $ _ {40} $ b $ _ _ {20} $ a {20} $材料平台。两个交换相互作用之间的复杂相互作用导致磁化方向的梯度跨堆栈的厚度,从而以非琐碎的方式改变了堆栈的磁滞和堆栈的自旋波征。我们测量了限制在堆栈厚度内的前四个自旋波的频率的场依赖性。我们使用微磁模拟对这些旋转波的相应厚度曲线进行了建模。与实验结果的比较允许推断出最能说明样品行为的磁参数。交换刚度的确定为16 $ \ pm $ 2 pj/m,独立于co $ _ {40} $ fe $ _ {40} $ b $ _ {20} $厚度。最薄层的层间交换耦合从-1.7 mj/m $^2 $开始,可以维持高于-1.3 mj/m $^2 $的COFEB层,厚度为40 nm。我们的方法与使用唯一饱和场的早期表征的比较表明,需要重新审视厚合成抗fiferromagnets中层间交换耦合的表格值。
The interlayer exchange coupling confers specific properties to Synthetic Antiferromagnets that make them suitable for several applications of spintronics. The efficient use of this magnetic configuration requires an in-depth understanding of the magnetic properties and their correlation with the material structure. Here we establish a reliable procedure to quantify the interlayer exchange coupling and the intralayer exchange stiffness in synthetic antiferromagnets; we apply it to the ultrasmooth and amorphous Co$_{40}$Fe$_{40}$B$_{20}$ (5-40 nm)/Ru/ Co$_{40}$Fe$_{40}$B$_{20}$ material platform. The complex interplay between the two exchange interactions results in a gradient of the magnetization orientation across the thickness of the stack which alters the hysteresis and the spin wave eigenmodes of the stack in a non trivial way. We measured the field-dependence of the frequencies of the first four spin waves confined within the thickness of the stack. We modeled these frequencies and the corresponding thickness profiles of these spin waves using micromagnetic simulations. The comparison with the experimental results allows to deduce the magnetic parameters that best account for the sample behavior. The exchange stiffness is established to be 16 $\pm$ 2 pJ/m, independently of the Co$_{40}$Fe$_{40}$B$_{20}$ thickness. The interlayer exchange coupling starts from -1.7 mJ/m$^2$ for the thinnest layers and it can be maintained above -1.3 mJ/m$^2$ for CoFeB layers as thick as 40 nm. The comparison of our method with earlier characterizations using the sole saturation fields argues for a need to revisit the tabulated values of interlayer exchange coupling in thick synthetic antiferromagnets.