Single-step etching fabrication of diffractive microlens on high-energy-beam sensitive glass

Michael R. Wang, H. Su
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引用次数: 0

Abstract

Diffractive microlens has a variety of applications including spot array generation, optical or hybrid opto-electronic interconnections, Fourier transformation, imaging, focusing, collimating, coupling, and beam shaping.[1-4] Diffractive microlens is also important for printing, optical data storage, and display applications. High lens efficiency is often required to minimize unwanted zero-order non-diffracted light beams that are responsible for optical crosstalks and background noises. High diffraction efficiency can be achieved by increasing number of phase levels of surface relief diffractive microlens structures.
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高能光束敏感玻璃上衍射微透镜的单步蚀刻制备
衍射微透镜具有多种应用,包括光斑阵列生成、光学或混合光电互连、傅里叶变换、成像、聚焦、准直、耦合和光束整形。[1-4]衍射微透镜在打印、光学数据存储和显示应用中也很重要。高透镜效率通常需要最小化不必要的零阶非衍射光束,负责光学串扰和背景噪声。通过增加表面浮雕衍射微透镜结构的相位级数,可以获得较高的衍射效率。
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