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Flexible, fast, and benchmarked vectorial model for focused laser beams

机译:用于聚焦激光束的灵活,快速,基准的矢量模型

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摘要

bulk processing of materials by laser radiation has largely evolved over the last decades and still opens up new scientific and industrial potentials. The development of any in-bulk processing application relies on the knowledge of laser propagation and especially the volumetric field distribution near the focus. Many commercial programs can simulate this, but, to adapt them, or to develop new methods, one usually must create a specific software. Besides, most of the time people also need to measure the actual field distribution near the focus to evaluate their assumptions in the simulation. To easily get access to this knowledge, we present our high-precision field distribution measuring method and release our in-house software InFocus [https://github.com/QF06/InFocus], under the Creative Commons 4.0 license. Our measurements provide 300nmlongitudinal resolution and diffraction limited lateral resolution. The in-house software allows fast vectorial analysis of the focused volumetric field distribution in bulk. Simulations of the linear propagation of light under different conditions (focusing optics, wavelength, spatial shape, and propagation medium) are in excellent agreement with propagation imaging experiments. The aberrations provoked by the refractive index mismatch as well as those induced by the focusing optics are both taken into account. The results indicate that our proposed model is suitable for the precise evaluation of energy deposition. (C) 2021 Optical Society of America
机译:在过去的几十年里,利用激光辐射进行材料的批量加工已经有了很大的发展,并且仍然开拓了新的科学和工业潜力。任何批量处理应用的开发都依赖于激光传播的知识,尤其是聚焦附近的体积场分布。许多商业程序可以模拟这种情况,但是,为了适应它们,或者开发新的方法,通常必须创建一个特定的软件。此外,大多数情况下,人们还需要测量焦点附近的实际场分布,以评估他们在模拟中的假设。为了方便地获取这些知识,我们介绍了我们的高精度场分布测量方法,并发布了我们的内部软件InFocus[https://github.com/QF06/InFocus],根据知识共享4.0许可证。我们的测量提供了300nm的纵向分辨率和衍射限制的横向分辨率。内部软件允许快速矢量分析批量聚焦体积场分布。光在不同条件下(聚焦光学、波长、空间形状和传播介质)的线性传播模拟与传播成像实验非常一致。同时考虑了折射率失配引起的像差和聚焦光学引起的像差。结果表明,我们提出的模型适用于能量沉积的精确评估。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第13期|共10页
  • 作者单位

    Friedirich Schiller Univ Jena Abbe Ctr Photon Inst Appl Phys Albert Einstein Str 15 D-07745 Jena Germany;

    Friedirich Schiller Univ Jena Abbe Ctr Photon Inst Appl Phys Albert Einstein Str 15 D-07745 Jena Germany;

    Friedirich Schiller Univ Jena Abbe Ctr Photon Inst Appl Phys Albert Einstein Str 15 D-07745 Jena Germany;

    Friedirich Schiller Univ Jena Abbe Ctr Photon Inst Appl Phys Albert Einstein Str 15 D-07745 Jena Germany;

    Friedirich Schiller Univ Jena Abbe Ctr Photon Inst Appl Phys Albert Einstein Str 15 D-07745 Jena Germany;

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