Issue 11, 2025

Metasurface-enabled small-satellite polarisation imaging

Abstract

Polarisation imaging is used to distinguish objects and surface characteristics that are otherwise not visible with black-and-white or colour imaging. Full-Stokes polarisation imaging allows complex image processing like water glint filtering, which is particularly useful for remote Earth observations. The relatively low cost of small-satellites makes their use in remote sensing more accessible. However, their size and weight limitations cannot accommodate the bulky conventional optics needed for full-Stokes polarisation imaging. We present the modelling of an ultra-thin topology-optimised diffractive metasurface that encodes polarisation states in five different diffraction orders. Positioning the metasurface in a telescope's pupil plane allows the diffraction orders to be imaged onto a single detector, resulting in the capability to perform single-shot full-Stokes polarisation imaging of the Earth's surface. The five rectangular image swaths are designed to use the full width of the camera, and then each successive frame can be stitched together as the satellite moves over the Earth's surface, restoring the full field of view achievable with any chosen camera without comprising the on-ground resolution. Each set of four out of the five orders enables the reconstruction of the full polarisation state, and their simultaneous reconstructions allow for error monitoring. The lightweight design and compact footprint of the polarisation imaging optical system achievable with a metasurface is a novel approach to increase the functionality of small satellites while working within their weight and volume constraints.

Graphical abstract: Metasurface-enabled small-satellite polarisation imaging

Supplementary files

Article information

Article type
Paper
Submitted
31 Mar 2025
Accepted
27 Apr 2025
First published
30 Apr 2025
This article is Open Access
Creative Commons BY-NC license

Nanoscale Adv., 2025,7, 3579-3587

Metasurface-enabled small-satellite polarisation imaging

S. E. Dean, J. Munro, N. Li, R. Sharp, D. N. Neshev and A. A. Sukhorukov, Nanoscale Adv., 2025, 7, 3579 DOI: 10.1039/D5NA00298B

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