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Date
2025-01Type
- Report
ETH Bibliography
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Abstract
This paper provides a general framework for deriving effective material properties of time-modulated systems of subwavelength resonators. It applies to subwavelength resonator systems with a general form of time-dependent parameters. We show that the resonators can be accurately described by a point-scattering formulation when the width of the resonators is small. In contrast to the static setting, where this point interaction approximation yields a Lippmann-Schwinger equation for the effective material properties, the mode coupling in the time-modulated case instead yields an infinite linear system of Lippmann-Schwinger-type equations. The effective equations can equivalently be written as a system of integro-differential equations. Moreover, we introduce a numerical scheme to approximately solve the system of coupled equations and illustrate the validity of the effective equation. Show more
Publication status
publishedExternal links
Journal / series
SAM Research ReportVolume
Publisher
Seminar for Applied Mathematics, ETH ZurichSubject
Time modulation; Subwavelength resonator; Effective medium theory; Transfer and scattering matrices; System of Lippmann-Schwinger equationsOrganisational unit
09504 - Ammari, Habib / Ammari, Habib
Related publications and datasets
Is supplemented by: https://github.com/rueffl/effective_medium_theory_timedep
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ETH Bibliography
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