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Micromagnetics of laminated Permalloy films

机译:层压坡莫合金薄膜的微磁学

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The edge curling wall (ECW) is observed in an optical Kerr microscope. Conditions are derived energetically favoring single transverse domains with ECWs over other multiple closure domains or single longitudinal domains that are undesirable because of their low permeability. Computed figures illustrate how the maximum permissible spacer thickness depends on Permalloy sublayer thickness, uniaxial anisotropy, width of the magnetic strip, mismatch of Permalloy thickness, and perpendicular anisotropy. The case with strip width W=100 mu m and vanishing magnetostriction or stress should require only a few sublayers. However, if W is very small, or if stress-induced or some other form of perpendicular anisotropy is excessive, then attainment of single transversely magnetized domains requires many sublayers. Some of these conclusions are supported by microscopic observations.
机译:在光学克尔显微镜中观察边缘卷曲壁(ECW)。从条件上得出的条件是,带有ECW的单个横向区域比其他多个闭合区域或单个纵向区域在能量上更有利,而这些区域由于其低渗透性而不理想。计算图说明了最大允许间隔物厚度如何取决于坡莫合金子层厚度,单轴各向异性,磁条宽度,坡莫合金厚度的不匹配以及垂直各向异性。带宽度为W = 100μm且磁致伸缩或应力消失的情况只需要几个亚层。但是,如果W很小,或者应力引起的垂直各向异性或其他形式的垂直各向异性过多,则要获得单个横向磁化畴就需要许多子层。其中一些结论得到微观观察的支持。

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