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通过单个超短激光脉冲控制微透镜的直径和数值孔径。

Control of diameter and numerical aperture of microlens by a single ultra-short laser pulse.

出版信息

Opt Lett. 2019 Nov 1;44(21):5149-5152. doi: 10.1364/OL.44.005149.

Abstract

We demonstrate a versatile method for fast and flexible fabrication of either one or an array of microlenses. Multi-foci axial intensity distribution generated by a phase pattern displayed on a spatial light modulator irradiates silica, causing ablation and its internal modification. The following wet etching step defines the diameter r, while the radius of curvature R (hence, the focal length f) is maintained the same. As a result, the numerical aperture NA=r/f changes from 0.2 to 0.4 for the same pulse energy (but different number of multi-foci) during ablation. An isotropic wet etching of silica becomes highly anisotropic for the initial stages of etching following the irradiated pattern. Subsequent evolution of the shape is governed by an isotropic silica etch and forms a spherical lens. This method can be extended to other materials and geometries of micro-optical elements.

摘要

我们展示了一种通用的方法,用于快速灵活地制造一个或一组微透镜。通过在空间光调制器上显示的相位图案产生的多焦点轴向强度分布辐照二氧化硅,导致烧蚀及其内部改性。后续的湿蚀刻步骤定义了直径 r,而曲率半径 R(因此,焦距 f)保持不变。结果,在烧蚀过程中,相同脉冲能量(但多焦点数量不同)下,数值孔径 NA=r/f 从 0.2 变为 0.4。在辐照图案之后的初始蚀刻阶段,二氧化硅的各向同性湿蚀刻变得高度各向异性。随后的形状演变由各向同性的二氧化硅蚀刻控制,并形成球形透镜。这种方法可以扩展到其他材料和微光学元件的几何形状。

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