Design strategies for efficient, fabrication-feasible extreme-ultraviolet metalens

Fuente: arXiv
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Main Authors: Lam, Shiu Hei, Patro, U Abinash, Rothhardt, Jan, Pertsch, Thomas
Format: Preprint
Published: 2026
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author Lam, Shiu Hei
Patro, U Abinash
Rothhardt, Jan
Pertsch, Thomas
author_facet Lam, Shiu Hei
Patro, U Abinash
Rothhardt, Jan
Pertsch, Thomas
contents The concept of metasurfaces was recently applied to the extreme ultraviolet (EUV) spectral regime, providing a new opportunity for transmissive focusing elements in a regime where materials are highly lossy. The realization of metalenses in the EUV, however, is challenging due to the optical losses and low refractive index contrast of available materials, as well as the larger-than-wavelength periodicity of metaatom arrays imposed by fabrication limits. In this paper, we propose alternative EUV metalens design strategies, including layout schemes and metaatom mapping rules. We demonstrate that the focusing efficiency can be roughly doubled compared with the simple square-lattice design of an EUV metalens purely by using an alternative semi-analytical design approach without reducing the metasurface's minimum feature size. The proposed strategies are generally applicable to metaoptics design for efficiency improvement when metaatoms are lossy or induce diffraction orders.
format Preprint
id arxiv_https___arxiv_org_abs_2605_10532
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Design strategies for efficient, fabrication-feasible extreme-ultraviolet metalens
Lam, Shiu Hei
Patro, U Abinash
Rothhardt, Jan
Pertsch, Thomas
Optics
The concept of metasurfaces was recently applied to the extreme ultraviolet (EUV) spectral regime, providing a new opportunity for transmissive focusing elements in a regime where materials are highly lossy. The realization of metalenses in the EUV, however, is challenging due to the optical losses and low refractive index contrast of available materials, as well as the larger-than-wavelength periodicity of metaatom arrays imposed by fabrication limits. In this paper, we propose alternative EUV metalens design strategies, including layout schemes and metaatom mapping rules. We demonstrate that the focusing efficiency can be roughly doubled compared with the simple square-lattice design of an EUV metalens purely by using an alternative semi-analytical design approach without reducing the metasurface's minimum feature size. The proposed strategies are generally applicable to metaoptics design for efficiency improvement when metaatoms are lossy or induce diffraction orders.
title Design strategies for efficient, fabrication-feasible extreme-ultraviolet metalens
topic Optics
url https://arxiv.org/abs/2605.10532