Temporal multilayer structures for designing higher-order transfer functions using time-varying metamaterials

Fuente: arXiv
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Auteurs principaux: Ramaccia, Davide, Alu, Andrea, Toscano, Alessandro, Bilotti, Filiberto
Format: Preprint
Publié: 2025
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author Ramaccia, Davide
Alu, Andrea
Toscano, Alessandro
Bilotti, Filiberto
author_facet Ramaccia, Davide
Alu, Andrea
Toscano, Alessandro
Bilotti, Filiberto
contents Temporal metamaterials are artificial materials whose electromagnetic properties change over time. In analogy with spatial media and metamaterials, where their properties change smoothly or abruptly over space, temporal metamaterials can exhibit a smooth variation over time, realizing a temporal non-homogeneous medium, or a stepwise transition, realizing the temporal version of dielectric slabs or multilayer structures. In this Letter, we focus our attention on temporal multilayer structures, and we propose the synthesis of higher-order transfer functions by modeling the wave propagation through a generalized temporal multilayer structure, consisting of a cascade over time of different media. The tailoring of the scattering response of temporal structure as a function of frequency is presented, deriving the corresponding scattering coefficients for a properly designed set of medium properties, i.e., permittivity and permeability, and application time, in analogy with what is typically done in optical and electromagnetic spatial multilayered structures. This allows us to design novel electromagnetic and optical devices with higher-order transfer functions by exploiting the temporal dimension instead of the spatial one.
format Preprint
id arxiv_https___arxiv_org_abs_2502_03255
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Temporal multilayer structures for designing higher-order transfer functions using time-varying metamaterials
Ramaccia, Davide
Alu, Andrea
Toscano, Alessandro
Bilotti, Filiberto
Optics
Applied Physics
Temporal metamaterials are artificial materials whose electromagnetic properties change over time. In analogy with spatial media and metamaterials, where their properties change smoothly or abruptly over space, temporal metamaterials can exhibit a smooth variation over time, realizing a temporal non-homogeneous medium, or a stepwise transition, realizing the temporal version of dielectric slabs or multilayer structures. In this Letter, we focus our attention on temporal multilayer structures, and we propose the synthesis of higher-order transfer functions by modeling the wave propagation through a generalized temporal multilayer structure, consisting of a cascade over time of different media. The tailoring of the scattering response of temporal structure as a function of frequency is presented, deriving the corresponding scattering coefficients for a properly designed set of medium properties, i.e., permittivity and permeability, and application time, in analogy with what is typically done in optical and electromagnetic spatial multilayered structures. This allows us to design novel electromagnetic and optical devices with higher-order transfer functions by exploiting the temporal dimension instead of the spatial one.
title Temporal multilayer structures for designing higher-order transfer functions using time-varying metamaterials
topic Optics
Applied Physics
url https://arxiv.org/abs/2502.03255