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Probing interspatial magnetic flux distributions in ferromagnetic stripe arrays by specular and off-specular polarized neutron scattering

机译:通过镜面和折射镜面偏振中子散射探测铁磁条阵列中的间隙磁通量分布

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Edge roughness in magnetic stripe arrays is an important structural parameter with a sizable impact on magnetic domains, domain correlation, pinning and propagation of domain walls in micro- and nanostripes proposed for data storage and logic devices. We have investigated two different stripe arrays fabricated by lithographic methods from permalloy Fe_(22)Ni_(78), one with rough edges and another one with smooth edges. Performing polarized neutron reflectivity and polarized neutron off-specular scattering both patterns yield specular reflectivity curves with pronounced Kiessig fringes and well resolved Bragg bands in the off-specular regime due to the lateral periodicity. When applying a saturating magnetic field perpendicular to the stripes, a significant diffuse scattering can be detected close to the total reflection edge where it is enhanced by the Yoneda effect. This diffuse magnetic scattering can be attributed to inhomogeneities of the magnetic induction in the empty space between the stripes. In contrast, the sample with much less edge roughness does not exhibit off-specular diffuse scattering. Thus polarized neutron scattering from stripe patterns is a suitable tool for quantitative characterization of inhomogeneous magnetic flux distribution in the interspace between magnetic stripes invoked by their edge roughness.
机译:磁条阵列中的边缘粗糙度是一个重要的结构参数,其对磁畴,域壁的磁性域,域相关,钉扎和传播,所提出的数据存储和逻辑器件所提出的微型和纳米壁。我们研究了由Percolographic方法制造的两种不同的条纹阵列,该晶片Fe_(22)Ni_(78),一个具有粗糙边的一个,另一个具有平滑边缘。执行偏振中子反射率和偏振中子偏析镜面散射两种图案均产生镜面反射率曲线,并且由于横向周期性,在俯视性制度中具有良好的kiessig条纹和良好的分辨的布拉格带。当垂直于条纹施加饱和磁场时,可以检测到靠近总反射边缘的显着的漫射散射,在那里通过Yoneda效应增强。该漫射磁散射可归因于条纹之间的空空间中的磁感应的不均匀性。相反,具有较少的边缘粗糙度的样品不会出现出镜面漫射散射。因此,来自条纹图案的偏振中子散射是用于通过边缘粗糙度调用的磁条之间的间隙中的间隙中的非均匀磁通量分布的合适工具。

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  • 来源
    《Physical review 》 |2020年第22期| 224404.1-224404.16| 共16页
  • 作者单位

    Ⅱ. Physikalisches Institut Universitaet zu Koeln 50937 Koeln Germany Festkoerperphysik/ Experimentalphysik Ruhr-Universitaet Bochum 44780 Bochum Germany;

    Festkoerperphysik/ Experimentalphysik Ruhr-Universitaet Bochum 44780 Bochum Germany Petersburg Nuclear Physics Institute 188300 Gatchina Russia;

    Festkoerperphysik/ Experimentalphysik Ruhr-Universitaet Bochum 44780 Bochum Germany;

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