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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Efficient tight focusing of laser beams optimally matched to their thin-film linear-to-radial polarization conversion: Method, implementation, and field near focus
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Efficient tight focusing of laser beams optimally matched to their thin-film linear-to-radial polarization conversion: Method, implementation, and field near focus

机译:激光束的高效焦点与其薄膜线性到径向极化转换最佳匹配:方法,实施和焦点附近的场

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摘要

A method is proposed for efficient, rotationally symmetric, tight mirror focusing of laser beams that is optimally matched to their thin-film linear-to-radial polarization conversion by a constant near-Brewster angle of incidence of the beams onto a polarizing element. Two optical systems and their modifications are considered that are based on this method and on the use of Toraldo filters. If focusing components of these systems operate in media with refractive indices equal to that of the focal region, they take the form of an axicon and an annular reflector generated by the revolution of an inclined parabola around the optical axis. Vectorial formulas for calculating the diffracted field near the focus of these systems are derived. Also presented are the results of designing a thin-film obliquely illuminated polarizer and a numerical simulation of deep UV laser beams generated by one of the systems and focused in an immersion liquid. The transverse and axial sizes of a needle longitudinally polarized field generated by the system with a simplest phase Toraldo filter were found to be 0.39 lambda and 10.5 lambda, with. being the wavelength in the immersion liquid. (C) 2017 Elsevier B.V. All rights reserved.
机译:提出了一种用于高效,旋转对称的,紧密镜子聚焦的用于通过梁在偏振元件上的恒定的近乎吹风器入射角与其薄膜线性到径向偏振转换最佳地匹配。两个光学系统和他们的修改都被认为是基于这种方法和使用TORALDO过滤器。如果这些系统的聚焦组件在具有等于焦点区域的折射率的介质中操作,则它们采用轴的形式和由倾斜抛物线的旋转周围的光轴产生的环形反射器。用于计算这些系统焦点附近的衍射场的矢量型公式。还提出了设计薄膜倾斜照射偏振器的结果和由一个系统中的一个产生的深紫外激光束的数值模拟,并聚焦在浸入液体中。通过用最简单的相位TORALDO滤波器系统生成的针纵向极化场的横向和轴向尺寸被发现是0.39拉姆达和10.5拉姆达,与。作为浸入液体中的波长。 (c)2017年Elsevier B.V.保留所有权利。

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