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All-glass 100 mm Diameter Visible Metalens for Imaging the Cosmos

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arxiv 2307.08186 v1 pith:BM6DHSKJ submitted 2023-07-17 physics.optics astro-ph.IMphysics.app-phphysics.space-ph

All-glass 100 mm Diameter Visible Metalens for Imaging the Cosmos

classification physics.optics astro-ph.IMphysics.app-phphysics.space-ph
keywords metasurfacesareaimaginglargemetalensvisibleall-glassdemonstrate
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Metasurfaces, optics made from subwavelength-scale nanostructures, have been limited to millimeter-sizes by the scaling challenge of producing vast numbers of precisely engineered elements over a large area. In this study, we demonstrate an all-glass 100 mm diameter metasurface lens (metalens) comprising 18.7 billion nanostructures that operates in the visible spectrum with a fast f-number (f/1.5, NA=0.32) using deep-ultraviolet (DUV) projection lithography. Our work overcomes the exposure area constraints of lithography tools and demonstrates that large metasurfaces are commercially feasible. Additionally, we investigate the impact of various fabrication errors on the imaging quality of the metalens, several of which are unique to such large area metasurfaces. We demonstrate direct astronomical imaging of the Sun, the Moon, and emission nebulae at visible wavelengths and validate the robustness of such metasurfaces under extreme environmental thermal swings for space applications.

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