Wide field-of-view and large depth-of-field metalenses

Fuente: arXiv
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Autori principali: Martin-Monier, Louis, Li, Zhaoyi, Yang, Fan, Shalaginov, Mikhail, Ranno, Luigi, Sia, Jia Xu Brian, Gu, Tian, Hu, Juejun
Natura: Preprint
Pubblicazione: 2025
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author Martin-Monier, Louis
Li, Zhaoyi
Yang, Fan
Shalaginov, Mikhail
Ranno, Luigi
Sia, Jia Xu Brian
Gu, Tian
Hu, Juejun
author_facet Martin-Monier, Louis
Li, Zhaoyi
Yang, Fan
Shalaginov, Mikhail
Ranno, Luigi
Sia, Jia Xu Brian
Gu, Tian
Hu, Juejun
contents The ability to visualize both macroscopic and microscopic features over an extended field of view is essential for endoscopic imaging and other applications ranging from machine vision to microscopy. However, miniaturizing endoscopes introduces inherent trade-offs between size and optical performance, including field-of-view (FOV), depth-of-field (DOF), and resolution. These constraints limit the use of microendoscopes in clinical settings such as early cancer detection within narrow, hard-to-access anatomical regions, including the lung, ovaries, and pancreas. State-of-the-art microendoscopes typically rely on microlens assemblies that increase both cost and size. Their large f-numbers also hinder the collection of high-resolution information from live tissue. In this work, we present two compact metalens designs that provide wide FOV, extended DOF, and high resolution, enabled by custom-tailored point spread functions (PSFs). The devices achieve a full 172 degrees FOV, an extended DOF from 0.4 mm to beyond 300 mm, and a resolution of 30 line pairs per millimeter, all within a 1 mm x 1 mm x 0.2 mm footprint. A key advantage of our approach is the ability to transition seamlessly between low and high magnification without mechanical refocusing. Final images are reconstructed through backend deconvolution, highlighting the potential of hybrid imaging systems that integrate computational techniques with flat-optics components.
format Preprint
id arxiv_https___arxiv_org_abs_2512_06635
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Wide field-of-view and large depth-of-field metalenses
Martin-Monier, Louis
Li, Zhaoyi
Yang, Fan
Shalaginov, Mikhail
Ranno, Luigi
Sia, Jia Xu Brian
Gu, Tian
Hu, Juejun
Optics
Applied Physics
The ability to visualize both macroscopic and microscopic features over an extended field of view is essential for endoscopic imaging and other applications ranging from machine vision to microscopy. However, miniaturizing endoscopes introduces inherent trade-offs between size and optical performance, including field-of-view (FOV), depth-of-field (DOF), and resolution. These constraints limit the use of microendoscopes in clinical settings such as early cancer detection within narrow, hard-to-access anatomical regions, including the lung, ovaries, and pancreas. State-of-the-art microendoscopes typically rely on microlens assemblies that increase both cost and size. Their large f-numbers also hinder the collection of high-resolution information from live tissue. In this work, we present two compact metalens designs that provide wide FOV, extended DOF, and high resolution, enabled by custom-tailored point spread functions (PSFs). The devices achieve a full 172 degrees FOV, an extended DOF from 0.4 mm to beyond 300 mm, and a resolution of 30 line pairs per millimeter, all within a 1 mm x 1 mm x 0.2 mm footprint. A key advantage of our approach is the ability to transition seamlessly between low and high magnification without mechanical refocusing. Final images are reconstructed through backend deconvolution, highlighting the potential of hybrid imaging systems that integrate computational techniques with flat-optics components.
title Wide field-of-view and large depth-of-field metalenses
topic Optics
Applied Physics
url https://arxiv.org/abs/2512.06635