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Influence of Vortex Transmission Phase Function on Intensity Distribution in the Focal Area of High-Aperture Focusing System

机译:涡流传输相位函数对光圈聚焦系统焦点区域强度分布的影响

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摘要

An analysis of the possibility of reducing lateral size and increasing longitudinal size of high-aperture focal system focus using vortex transmission phase function for different types of input polarization including the general vortex one was carried out. We have shown both analytically and numerically that subwavelength localization for separate components of the vector field is possible at any polarization type. This fact can be important when considering the interaction between laser radiation and materials that are selectively sensitive to different components of electromagnetic field. In order to form substantially subwavelength details in total intensity, specific polarization types and additional apodization of pupil function such as masking by a narrow annular slit, are necessary. The optimal selection of the slit radius allows to balance the tradeoff between focus depth and focal spot size.
机译:使用涡旋透射相位函数对包括普通涡旋一在内的不同类型的输入极化进行了分析,以减小高光圈聚焦系统焦点的横向尺寸并增加纵向尺寸的可能性。我们已经从分析和数值两个方面表明,在任何偏振类型下,矢量场单独分量的亚波长定位都是可能的。当考虑激光辐射与对电磁场的不同分量有选择地敏感的材料之间的相互作用时,这一事实可能很重要。为了在总强度上形成基本上亚波长的细节,需要特定的偏振类型和附加的变迹光瞳功能,例如通过狭窄的环形狭缝掩盖。缝隙半径的最佳选择可以平衡焦点深度和焦点尺寸之间的折衷。

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