Taming the single-cylinder scattering through time-modulation - The role of the modulation phase

Dielectric particles with time-modulated electromagnetic properties exhibit intriguing scattering phenomena, entailing unique response and possibilities in meta-structures made of such particles. In this work, we investigate the scattering properties of an infinitely-long cylinder with periodically time-modulated permittivity. We demonstrate parametric scattering amplification, depending on the strength of the modulation, as well as controllable angular scattering pattern, ranging from enhanced forward to enhanced backward, or even scattering cancellation. This angular tunability is achieved through appropriate control of the modulation phase, highlighting its critical role in multi-modal time-modulated scattering systems.

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Publication Details

Journal
Optical Materials Express
Published
2026-09-16
DOI
https://doi.org/10.1364/ome.607173
Primary Topic
Metamaterials and Metasurfaces Applications
Type
article
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article

Taming the single-cylinder scattering through time-modulation - The role of the modulation phase

I. Katsantonis, M. Kafesaki, Jian Yan, V. Asadchy et al.
Optical Materials Express
Metamaterials and Metasurfaces Applications
article

Taming the single-cylinder scattering through time-modulation - The role of the modulation phase

I. Katsantonis, M. Kafesaki, Jian Yan, V. Asadchy, M. Mostafa
article en

Abstract

Dielectric particles with time-modulated electromagnetic properties exhibit intriguing scattering phenomena, entailing unique response and possibilities in meta-structures made of such particles. In this work, we investigate the scattering properties of an infinitely-long cylinder with periodically time-modulated permittivity. We demonstrate parametric scattering amplification, depending on the strength of the modulation, as well as controllable angular scattering pattern, ranging from enhanced forward to enhanced backward, or even scattering cancellation. This angular tunability is achieved through appropriate control of the modulation phase, highlighting its critical role in multi-modal time-modulated scattering systems.

Optical Materials Express
Openalex Percentile: Top 59%
Metamaterials and Metasurfaces Applications
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