Westphalen A, Lee M-S, Remhof A, Zabel H
Institut für Experimentalphysik/Festkörperphysik, Ruhr-Universität Bochum, 44780 Bochum, Germany.
Rev Sci Instrum. 2007 Dec;78(12):121301. doi: 10.1063/1.2821148.
Experimental and theoretical aspects of obtaining the magnetic information carried by laser beams diffracted from an array of micro- or nanosized magnetic objects are reviewed. We report on the fundamentals of vector magneto-optic Kerr effect (MOKE), Bragg-MOKE, and second-order effects in the Kerr signal in longitudinal Kerr geometry as well as on an experimental setup used for vector and Bragg-MOKE experiments. The vector and Bragg-MOKE technique in combination with micromagnetic simulation is a reliable tool for measuring the complete magnetization vector and for characterizing the reversal mechanism of lateral magnetic nanostructures. We discuss the Bragg-MOKE effect for three standard domain configurations during the magnetization reversal process and present the expected behavior of the magnetic hysteresis loops.
综述了从微米或纳米尺寸磁性物体阵列衍射的激光束所携带磁信息获取的实验和理论方面。我们报告了纵向克尔几何结构中矢量磁光克尔效应(MOKE)、布拉格 - MOKE以及克尔信号中的二阶效应的基本原理,以及用于矢量和布拉格 - MOKE实验的实验装置。矢量和布拉格 - MOKE技术与微磁模拟相结合是测量完整磁化矢量和表征横向磁性纳米结构反转机制的可靠工具。我们讨论了磁化反转过程中三种标准畴结构的布拉格 - MOKE效应,并给出了磁滞回线的预期行为。