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Tight focusing of radially polarized beams modulated by a fractal conical lens

机译:由分形圆锥形透镜调节径向偏振光梁的紧密聚焦

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摘要

A novel high numerical aperture (NA) focusing system with a fractal conical lens (FCL) is proposed, and tight focusing of radially polarized beams through the proposed optical system is investigated theoretically and numerically. The influence of several relevant factors, including the FCL's stage S, objective lens' NA, and truncation parameter beta(0), on the targeted beam's focusing characteristics in the focal region is discussed in detail. It is found that, when a FCL with S >= 0 is employed, position of the major focal point would shift from the geometric focal point, and the focused intensity distributions cannot maintain symmetrical about the focus any more, although they present different profiles for various truncation parameters beta(0). When S >= 2, multiple focal points can be generated, i.e., a single major focus and a series of subsidiary foci surrounding it along the optical axis, which form a focal region. These unique focusing characteristics with a FCL are remarkably different from that of without a FCL. The fascinating findings here may be taken advantage of when using radially polarized beams in exploiting new-type optical tweezers and making use of a FCL. (C) 2017 Elsevier B.V. All rights reserved.
机译:提出了一种具有分形圆锥形透镜(FCL)的新型高数值孔径(NA)聚焦系统,从理论上和数值上,研究了通过所提出的光学系统的径向偏振梁的紧密聚焦。详细讨论了若干相关因素,包括FCL的阶段S,物镜Na和截断参数β(0)的影响,包括焦点区域中的目标光束的聚焦特性。结果发现,当采用S> = 0的FCL时,主要焦点的位置将从几何焦点移位,并且聚焦强度分布不能再对焦点保持对称的,尽管它们存在不同的轮廓各种截断参数beta(0)。当S> = 2时,可以生成多个焦点,即单个主要焦点和沿着光轴围绕其围绕其形成焦距区域的一系列子公司焦点。与FCL的这些独特的聚焦特性与没有FCL的无线电的聚焦特征非常不同。当使用径向偏振梁在利用新型光学镊子和使用FCL时,可以利用此处的迷人调查结果。 (c)2017年Elsevier B.V.保留所有权利。

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