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Composite axilens-axicon diffractive optical elements for generation of ring patterns with high focal depth

机译:用于产生具有高焦深的环形图案的复合轴-轴锥衍射光学元件

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A binary Fresnel Zone Axilens (FZA) is designed for the infinite conjugate mode and the phase profile of a refractive axicon is combined with it to generate a composite Diffractive Optical Element (DOE). The FZA designed for two focal lengths generates a line focus along the propagation direction extending between the two focal planes. The ring pattern generated by the axicon is focused through this distance and the radius of the ring depends on the propagation distance. Hence, the radius of the focused ring pattern can be tuned, during the design process, within the two focal planes. The integration of the two functions was carried out by shifting the location of zones of FZA with respect to the phase profile of the refractive axicon resulting in a binary composite DOE. The FZAs and axicons were designed for different focal depth values and base angles respectively, in order to achieve different ring radii within the focal depth of each element. The elements were simulated using scalar diffraction formula and their focusing characteristics were analyzed. The DOEs were fabricated using electron beam direct writing and evaluated using a fiber coupled diode laser. The tunable ring patterns generated by the DOEs have prospective applications in microdrilling as well as microfabrication of circular diffractive and refractive optical elements.
机译:针对无限共轭模式设计了二元菲涅耳区轴突(FZA),并将折射轴锥棱镜的相位分布与其组合以生成复合衍射光学元件(DOE)。为两个焦距设计的FZA沿在两个焦平面之间延伸的传播方向生成线聚焦。轴锥产生的环形图案会聚焦在此距离内,并且环形半径取决于传播距离。因此,可以在设计过程中在两个焦平面内调整聚焦环形图案的半径。通过将FZA区域的位置相对于屈光轴锥的相位分布进行偏移来实现这两个功能的集成,从而生成二元复合DOE。 FZA和轴锥分别设计用于不同的焦深值和底角,以便在每个元素的焦深范围内获得不同的环半径。使用标量衍射公式对元素进行了模拟,并分析了其聚焦特性。使用电子束直接写入来制造DOE,并使用光纤耦合二极管激光器对其进行评估。 DOE产生的可调环形图案在圆形钻孔和折射光学元件的微钻以及微加工中具有潜在的应用前景。

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