首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Effect of polarization on focal depth in high numerical apertures optical systems
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Effect of polarization on focal depth in high numerical apertures optical systems

机译:偏振对高数值孔径光学系统中焦深的影响

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摘要

The generalized cylindrical vector beam is just a linear combination of radial and azimuthal polarization. For radially polarized light in the focal plane, there are two electric field components, the radial component and z-component whose magnitude increase with the increase of numerical aperture. By contrast, for azimuthally polarized light in the focal plane, there is only one electrical field component in the azimuthal polarization, it is easy to understand the difference between the two polarization effects. In this paper, we demonstrate how this phenomenon can be harnessed to make a properly selected polarization component to achieve high focal depth in high numerical aperture systems. Numerical simulations show that the evolution of the focal shape is very considerable by changing polarization rotation angle of the generalized cylindrical vector beam. And some interesting focal spots and focal split may occur. And if the ratio of radial and azimuthal polarization is set properly by changing the polarization rotation angle, a largest focal depth is achieved. The tunable range of the focal depth is very considerable. The ratio of radial and azimuthal polarization is different in different NA optical system for obtaining the largest focal depth. We will denote a technique of polarization-assisted high focal depth in high numerical aperture systems.
机译:广义圆柱矢量束只是径向极化和方位极化的线性组合。对于焦平面中的径向偏振光,存在两个电场分量,即径向分量和z分量,其幅度随数值孔径的增加而增加。相反,对于焦平面中的方位偏振光,方位偏振中只有一个电场分量,很容易理解这两种偏振效应之间的差异。在本文中,我们演示了如何利用此现象来制作适当选择的偏振分量,以在高数值孔径系统中实现高焦深。数值模拟表明,通过改变广义柱面矢量光束的偏振旋转角度,焦点形状的变化非常可观。并且可能会出现一些有趣的焦点和焦点分裂。并且,如果通过改变偏振旋转角度来适当地设置径向偏振和方位偏振的比率,则可以获得最大的焦深。焦深的可调范围非常可观。为了获得最大的焦深,在不同的NA光学系统中,径向偏振和方位偏振的比率是不同的。我们将在高数值孔径系统中表示偏振辅助的高焦深技术。

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