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Design of focal beam shaping system through irradiance and phase control

机译:通过辐照度和相位控制的光束整形系统设计

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摘要

Focal beam shaping (FBS), or laser beam shaping at focus, is required in many laser applications. The most common approach is to use a phase element and a Fourier transform lens to generate at the focal plane of the lens the desired irradiance pattern, usually a flat-top. The shaping quality depends strongly on a dimensionless parameter β. In case of long focal length and/or small focal spot, the input laser beam should be sufficiently large in order to get a large β value for a satisfying shaping quality. Therefore additional beam expansions might be needed. In this work, we propose a different approach with two plano-aspheric lenses that allows to control both irradiance and phase at focus. The two lenses are designed by an extended ray mapping technique combined with a rigorous backward wave propagation method, so that diffraction effects around laser focus can be implemented in a reliable way. With the developed approach, the shaping quality is guaranteed without the possible need for extra beam expanders, which makes the system more compact. The advantage of our design approach is demonstrated in direct comparison with the conventional Fourier approach for the same design example to transform a Gaussian beam to have a circular flat-top irradiance pattern.
机译:在许多激光应用中,需要聚焦光束整形(FBS)或聚焦激光整形。最常见的方法是使用相位元件和傅立叶变换透镜在透镜的焦平面上生成所需的辐照度图案,通常为平顶。成形质量在很大程度上取决于无量纲参数β。在长焦距和/或小焦点的情况下,输入激光束应足够大,以便获得较大的β值,以获得令人满意的成形质量。因此,可能需要额外的光束扩展。在这项工作中,我们提出了一种使用两个平面非球面透镜的不同方法,该方法可以控制聚焦的辐照度和相位。通过扩展射线映射技术结合严格的后向波传播方法设计这两个透镜,从而可以可靠地实现围绕激光焦点的衍射效果。利用已开发的方法,可以保证成形质量,而无需额外的扩束器,从而使系统更加紧凑。对于同一个设计示例,将高斯光束转换为具有圆形平顶辐照度的图案,可以直接将其与传统的傅立叶方法进行比较,从而证明了我们设计方法的优势。

著录项

  • 来源
    《Optical modelling and design IV 》|2016年|988910.1-988910.8|共8页
  • 会议地点 Brussels(BE)
  • 作者单位

    Brussels Photonics Team (B-PHOT), Applied Physics and Photonics Department TONA, Faculty of Engineering, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, B-1050, Belgium;

    Brussels Photonics Team (B-PHOT), Applied Physics and Photonics Department TONA, Faculty of Engineering, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, B-1050, Belgium,Light Lighting Laboratory, KU Leuven, Gebroeders De Smetstraat 1, Gent, B-9000, Belgium;

    Brussels Photonics Team (B-PHOT), Applied Physics and Photonics Department TONA, Faculty of Engineering, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, B-1050, Belgium;

    Brussels Photonics Team (B-PHOT), Applied Physics and Photonics Department TONA, Faculty of Engineering, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, B-1050, Belgium;

    Brussels Photonics Team (B-PHOT), Applied Physics and Photonics Department TONA, Faculty of Engineering, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, B-1050, Belgium;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser beam shaping; Geometrical opitcal design; aspherical lens design; lens design; wave propagation;

    机译:激光束整形;几何光学设计;非球面镜片设计;镜片设计波传播;

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