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Formation of optical vortices with all-glass nanostructured gradient index masks

机译:用全玻璃纳米结构梯度折射率掩模形成光学涡旋

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We report a development of microscopic size gradient index vortex masks using modified stack-and-draw technique. Vortex mask has a form of tens of microns thick, flat-surface all-glass plate. Its functionality is determined by internal nanostructure composed of two types of soft glass nanorods. Their spatial arrangement ensures that the average refractive index mimics continuous refractive index distribution imposing azimuthal phase modulation of optical beam. The mask of thickness of 40 microns is used to demonstrate generation of optical vortices with charges 1 and 2, in the femtosecond and cw regimes, respectively.
机译:我们报告了使用改进的堆栈绘制技术的微观尺寸梯度指数涡流掩模的发展。涡流掩膜具有数十微米厚的平面全玻璃板形式。它的功能取决于由两种类型的软玻璃纳米棒组成的内部纳米结构。它们的空间布置可确保平均折射率模仿连续的折射率分布,从而施加光束的方位角相位调制。厚度为40微米的掩模用于演示分别在飞秒和cw模式下产生电荷1和2的光学涡旋。

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