论文标题

高效,80毫米的孔径金属望远镜

High-efficiency, 80-mm aperture metalens telescope

论文作者

Zhang, Lidan, Chang, Shengyuan, Chen, Xi, Ding, Yimin, Rahman, Md Tarek, Duan, Yao, Stephen, Mark, Ni, Xingjie

论文摘要

金属镜,人工设计的次波长纳米结构将光聚焦在超薄厚度内,有望在传统光学设备范式上移动范式。但是,金属的孔径通常通过通常基于扫描的制造方法在数百微米内结合,从而限制了它们在望远镜等实用光学设备上的用法。在这里,我们第一次演示了高效,单镜头,折射金属望远镜。我们开发了一种质量生产友好的工作流程,用于使用深脉络膜(DUV)光刻术和涉及标线旋转和图案缝线的多曝光过程制造晶圆尺度(80毫米孔径)金属,以利用金属的径向对称性。我们的金属在近红外区域(1200-1600 nm)起作用,实验性的1450 nm在1450 nm时具有衍射限制的性能和高峰值聚焦效率。基于金属人,我们构建了单镜望远镜,并获得了月球表面的图像,从而揭示了其地理结构。我们认为,我们对Metalens望远镜的演示证明了Metasurfaces中令人兴奋的潜力,并可能为涉及大型光学系统的地区带来新的可能性,包括地球科学,行星观察和天体物理学。

Metalenses, artificially engineered subwavelength nanostructures to focus light within ultrathin thickness, promise potential for a paradigm shift of conventional optical devices. However, the aperture sizes of metalenses are usually bound within hundreds of micrometers by the commonly-used scanning-based fabrication methods, limiting their usage on practical optical devices like telescopes. Here, for the first time, we demonstrate a high-efficiency, single-lens, refractive metalens telescope. We developed a mass production-friendly workflow for fabricating wafer-scale (80-mm aperture) metalenses using deep-ultraviolet (DUV) photolithography and a multi-exposure process involving reticle rotation and pattern stitching to leverage the radial symmetry of metalenses. Our metalens works in the near-infrared region (1200 - 1600 nm) with diffraction-limited performance and a high peak focusing efficiency of 80.84% at 1450 nm experimentally. Based on the metalens, we built a single-lens telescope and acquired images of the lunar surface, revealing its geographical structures. We believe our demonstration of the metalens telescope proves the exciting potential lying in the metasurfaces and could bring new possibilities for areas involving large optical systems, including geosciences, planetary observation, and astrophysical science.

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