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Studies on Magnetization Reversal in 2-dimensional Spin Photonic Crystals of Cobalt Anti-dot Arrays

机译:钴反点阵二维自旋光子晶体中磁化反转的研究

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Cobalt anti-dot square-lattice arrays of different periodicities were fabricated using the photolithography and wet-etching process. The dimensions of these 2-dimensional spin photonic crystals were checked by using scanning electron microscopy and atomic force microscopy whereas the magnetic properties were studied using the magnetooptical Kerr effect (MOKE) and magnetic force microscopy (MFM). The in-plane azimuthal MOKE measurements showed uniaxial two-fold anisotropy with the hard and the easy axes along the nearest neighbor rows/columns and the diagonal making an angle of 45? with respect to the nearest neighbor row/column, respectively. The coercive field was strongly influenced by changes in the lattice periodicity. The remanent state revealed well-defined domain structures, which varied periodically with the lattice geometry as was clearly seen from the MFM imaging. To elucidate the domain configuration, we also performed micromagnetic simulations and the results are presented in this report.
机译:使用光刻和湿法刻蚀工艺制造了具有不同周期性的钴反点方格子阵列。通过使用扫描电子显微镜和原子力显微镜检查了这些二维自旋光子晶体的尺寸,而使用磁光克尔效应(MOKE)和磁力显微镜(MFM)研究了磁性。平面内方位MOKE测量显示单轴两倍各向异性,其硬轴和易轴沿最近的相邻行/列,对角线成45°角。分别针对最近的邻居行/列。矫顽场受到晶格周期性变化的强烈影响。从MFM成像中可以清楚地看到,剩余状态揭示了定义明确的畴结构,该结构随晶格几何形状周期性变化。为了阐明磁畴配置,我们还进行了微磁仿真,结果在本报告中介绍。

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