Fabrication and replication of high efficiency blazed gratings with grayscale electron beam lithography and UV nanoimprint lithography

纳米压印光刻 材料科学 光学 平版印刷术 电子束光刻 抵抗 栅栏 下一代光刻 光电子学 X射线光刻 衍射效率 制作 衍射光栅 多重图案 纳米技术 物理 图层(电子) 医学 替代医学 病理
作者
Marie‐Aline Mattelin,A. Radosavljević,Jeroen Missinne,Dieter Cuypers,Sander Kommeren,Jos Vandael,Jan Matthijs ter Meulen,Luc Verduyckt,Geert Van Steenberge
标识
DOI:10.1117/12.2542171
摘要

In a waveguide-type display for augmented reality, the image is injected in the waveguide and extracted in front of the eye appearing superimposed on the real world scene. An elegant and compact way of coupling these images in and out is by using blazed gratings, which can achieve high diffraction efficiencies, thereby reducing stray light and decreasing the required power levels. This study investigates the fabrication of blazed gratings with grayscale electron beam lithography and the subsequent replication of the realized 3D grating structures in a polymer material with ultraviolet nanoimprint lithography. As such, diffractive elements are realized on a waveguide sheet, with very good control over the dimensions and the profile of the printed features. Blazed gratings are designed for green light (λ= 543 nm) and a diffraction angle of 43°. Making use of a PMMA resist and by carefully optimizing the electron-beam parameters, electron dose distributions and development step, blazed gratings with a pitch of 508 nm and a fill factor of 0.66 are achieved. Finally, a master is realized with two blazed gratings, 3 cm apart, which are replicated using ultraviolet nanoimprint lithography onto a waveguide sheet. The in- and outcoupling of an image through these two blazed gratings is shown, appearing sharp and non-distorted in the environment, and a throughput efficiency of 17.4% is confirmed.
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