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Hauptverfasser: Rustomji, Kaizad, Estakhri, Nasim Mohammadi, Estakhri, Nooshin M.
Format: Preprint
Veröffentlicht: 2026
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2602.23328
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author Rustomji, Kaizad
Estakhri, Nasim Mohammadi
Estakhri, Nooshin M.
author_facet Rustomji, Kaizad
Estakhri, Nasim Mohammadi
Estakhri, Nooshin M.
contents Through temporal shaping of the excitation signal, the complex-frequency scattering zeros of a lossless structure can be accessed, enabling a storage-release mechanism referred to as coherent virtual absorption. Practical demonstrations of this mechanism, however, have been limited to simple configurations such as slabs and spheres, where analytical solutions allow accurate prediction of the complex-frequency scattering zeros. Here, we extend this concept into the realm of metasurfaces and demonstrate coherent virtual absorption in realistic and dispersive metasurface configurations. Through a combination of full-wave analysis and rational approximation, we present a practical scheme to identify suitable complex-frequency zeros and achieve coherent virtual absorption successfully. Our approach can be implemented in arbitrary metasurface configurations with any number of ports, providing a robust framework for optimized energy storage, memories, optical sensing, and modulation in practical photonic systems.
format Preprint
id arxiv_https___arxiv_org_abs_2602_23328
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Coherent Virtual Absorption in Dielectric Metasurfaces
Rustomji, Kaizad
Estakhri, Nasim Mohammadi
Estakhri, Nooshin M.
Optics
Through temporal shaping of the excitation signal, the complex-frequency scattering zeros of a lossless structure can be accessed, enabling a storage-release mechanism referred to as coherent virtual absorption. Practical demonstrations of this mechanism, however, have been limited to simple configurations such as slabs and spheres, where analytical solutions allow accurate prediction of the complex-frequency scattering zeros. Here, we extend this concept into the realm of metasurfaces and demonstrate coherent virtual absorption in realistic and dispersive metasurface configurations. Through a combination of full-wave analysis and rational approximation, we present a practical scheme to identify suitable complex-frequency zeros and achieve coherent virtual absorption successfully. Our approach can be implemented in arbitrary metasurface configurations with any number of ports, providing a robust framework for optimized energy storage, memories, optical sensing, and modulation in practical photonic systems.
title Coherent Virtual Absorption in Dielectric Metasurfaces
topic Optics
url https://arxiv.org/abs/2602.23328