Hang Li, Luo Kai, Fu Jian, Chang Yizhe, Wang Ying, Chen Peifeng
Appl Opt. 2018 Mar 20;57(9):2069-2072. doi: 10.1364/AO.57.002069.
Based on extended Richards-Wolf theory for axisymmetric surfaces and the inverse Faraday effect, we propose the generation of a purely longitudinal magnetization needle by focusing Gaussian annular azimuthally polarized beams with a spherical mirror. The needle obtained has a longitudinal length varying hundreds to thousands of wavelengths while keeping the lateral size under 0.4λ, and the corresponding aspect ratio can easily reach more than 2000. It may be the first time that a magnetization needle whose aspect ratio is over 500 has been achieved. The approximate analytical expressions of the magnetization needle are given, and the longitudinal length is tunable by changing the value of the angular thickness and the position of the annular beams.
基于轴对称表面的扩展理查兹-沃尔夫理论和逆法拉第效应,我们提出通过用球面镜聚焦高斯环形方位角偏振光束来产生纯纵向磁化针。所获得的针纵向长度变化范围为数百到数千个波长,同时横向尺寸保持在0.4λ以下,相应的纵横比很容易达到2000以上。这可能是首次实现纵横比超过500的磁化针。给出了磁化针的近似解析表达式,并且纵向长度可通过改变角厚度值和环形光束的位置来调节。