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physics.optics2026

Plasmonic Fourier Surfaces Revisited: Relating Bandgaps with Bound States in the Continuum

Alexander A. Antonov, Connor Heimig, Hannah Niese +5

Periodically corrugated metal interfaces supporting surface plasmon polaritons (SPPs) belong to the earliest nanoplasmonic platforms. Even simplest reliefs described by a few harmo…

physics.optics2026

Optical Fourier Surfaces for Free-Space Computer-Generated Holography

Y. M. Glauser, C. -Y. Shen, D. B. Seda +10

Computer-generated holography can shape electromagnetic fields by encoding wavefront information in nanostructured surfaces. However, despite significant progress, hologram designs…

physics.optics2026

Broadband, compact, and training-free optical processors for parallel image classification

Sander J. W. Vonk, Boris de Jong, Yannik M. Glauser +5

As artificial intelligence becomes increasingly prevalent, the demand for faster and more energy-efficient computing approaches grows. While optical computing offers intrinsic adva…

physics.optics2026

Fourier pixels for reciprocal light control

Yannik M. Glauser, Sander J. W. Vonk, David B. Seda +7

Digital cameras and displays utilise picture elements (pixels) that perform a single function: detecting or emitting light intensity. To exploit the full information content of ele…

physics.optics2025

Diffraction of Light from Optical Fourier Surfaces

Yannik M. Glauser, J. J. Erik Maris, Raphael Brechbühler +6

Diffractive surfaces shape optical wavefronts for applications in spectroscopy, high-speed communication, and imaging. The performance of these structures is primarily determined b…