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The generation of optical needle and magnetization needle with tunable longitudinal depth

机译:具有可调谐纵向深度的光针和磁化针的产生

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Based on vector diffraction theory and inverse Faraday effect, we report on the generation of optical needle and magnetization needle with tunable longitudinal depth by focusing a narrow annulus of azimuthally polarized beams using optmagnetic materials and an elliptical mirror. In this paper, we present the expression of the approximate result between the angular thickness A0 and the longitudinal depth when the annulus is assumed to be sufficiently narrow (Δθ?π/2). We theoretically demonstrate that the induced magnetization needle has the same longitudinal depth as optical needle, but with different distributions. The results are applied to the specific cases of the elliptical mirror and the parabolic mirror, then we further theoretically demonstrate that the longitudinal depth is equally long in the elliptical mirror focusing system and the parabolic mirror focusing system.
机译:基于矢量衍射理论和反向法拉第效应,我们通过光学材料和椭圆形镜子聚焦方位角偏振梁的窄环来报告光针和磁化针的产生。在本文中,当假设空环的角度厚度A0和纵向深度的近似结果的表达式呈现出在脉冲空间被充分窄(Δθ≤π/ 2)。理论上我们证明了感应的磁化针具有与光学针相同的纵向深度,而是具有不同的分布。结果应用于椭圆镜和抛物面镜的特定情况,然后理论上我们进一步证明纵向深度在椭圆形镜像聚焦系统和抛物面镜焦系统中同样长。

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