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20192026
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physics.optics2026

Multifunctional Imaging with an Inverse-Designed Nonlocal Metasurface

Lincoln Clark, Yang Xu, Cat-Uyen Phan +6

Nonlocal metasurfaces enable all-optical processing of spatial information in optical fields. Here, we demonstrate a topology-optimised metasurface that switches between phase-cont…

physics.optics2026

Wavelength and Polarization Multiplexed Nonlocal Metasurface for Quantitative Phase Microscopy

Haiwei Wang, Shikun Ma, Shaban B. Sulejman +6

Imaging transparent samples remains an ongoing challenge in the study of unstained biological cells and material samples. Widely used methods trade off system complexity, cost and…

physics.optics20251 cited

Quantum Phase Gradient Imaging Using a Nonlocal Metasurface System

Jinliang Ren, Jinyong Ma, Katsuya Tanaka +4

Quantum phase imaging enables the analysis of transparent samples with thickness and refractive index variations in scenarios requiring precise measurements under low-light conditi…

physics.optics2024

Metasurfaces for infrared multi-modal microscopy: phase contrast and bright field

Shaban B. Sulejman, Lukas Wesemann, Mikkaela McCormack +9

Different imaging modalities are used to extract the diverse information carried in an optical field. Two prominent modalities include bright field and phase contrast microscopy th…

physics.optics2023

Reconfigurable Image Processing Metasurfaces with Phase-Change Materials

Michele Cotrufo, Shaban B. Sulejman, Lukas Wesemann +4

Optical metasurfaces have been enabling reduced footprint and power consumption, as well as faster speeds, in the context of analog computing and image processing. While various im…

physics.optics2019

Near-perfect absorber as a subwavelength thickness spatial frequency filter for optical image processing

Lukas Wesemann, Evgeniy Panchenko, Kalpana Singh +4

Spatial frequency filtering is a fundamental enabler of information processing methods in biological and technical imaging. Most filtering methods, however, require either bulky an…