论文标题
傅立叶空间广义磁光椭圆法
Fourier-space generalized magneto-optical ellipsometry
论文作者
论文摘要
Magneto-Spitical Kerr效应(MOKE)是一种用于研究薄膜和纳米结构的广泛使用的技术,可提供磁性表征,并具有良好的空间和时间分辨率。由于光与磁性样品的复杂耦合,常规的摩克磁力计通常通过选择少量的入射波矢量值,将入射光束聚焦到一个小位置,并通过光电镜来记录该角度范围的反射强度。这通常提供与磁化成分混合物成比例的信号,需要其他方法来进行全矢量磁性表征。 在这里,我们在计算上研究了一个傅立叶空间摩克设置,其中使用高数值光圈光学器件和相机检测器的聚焦梁椭圆机可以同时绘制强度分布,以绘制各种入射和反射的波形向量的强度分布。我们采用循环入射的极化光,没有分析光学,结合了光强度图的拟合程序,以在线性近似下的Kerr效应的分析表达。通过这种方式,我们能够以高精度和短的获取时间来检索磁化载体的三个未知组件,以及材料的光学和磁光学常数,并有可能单射击测量值。因此,提出了傅里叶摩克作为一种强大的方法,用于为广泛的磁性材料和设备执行通用的磁光椭圆法。
The magneto-optical Kerr effect (MOKE) is a widely used lab-based technique for the study of thin films and nanostructures, providing magnetic characterization with good spatial and temporal resolutions. Due to the complex coupling of light with a magnetic sample, conventional MOKE magnetometers normally work by selecting a small range of incident wave-vector values, focusing the incident light beam to a small spot, and recording the reflected intensity at that angular range by means of photodetectors. This generally provides signals proportional to a mixture of magnetization components, requiring additional methodologies for full vectorial magnetic characterization. Here, we computationally investigate a Fourier-space MOKE setup, where a focused beam ellipsometer using high numerical aperture optics and a camera detector is employed to simultaneously map the intensity distribution for a wide range of incident and reflected wave-vectors. We employ circularly incident polarized light and no analyzing optics, in combination with a fitting procedure of the light intensity maps to the analytical expression of the Kerr effect under linear approximation. In this way, we are able to retrieve the three unknown components of the magnetization vector as well as the material's optical and magneto-optical constants with high accuracy and short acquisition times, with the possibility of single shot measurements. Fourier MOKE is thus proposed as a powerful method to perform generalized magneto-optical ellipsometry for a wide range of magnetic materials and devices.