Surface Plasmon Polariton Excitation in Time-modulated Media

Fuente: arXiv
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Bibliographic Details
Main Authors: Raziman, T. V., Touboul, Marie, Sapienza, Riccardo, Craster, Richard V., Rodríguez-Fortuño, Francisco J.
Format: Preprint
Published: 2025
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author Raziman, T. V.
Touboul, Marie
Sapienza, Riccardo
Craster, Richard V.
Rodríguez-Fortuño, Francisco J.
author_facet Raziman, T. V.
Touboul, Marie
Sapienza, Riccardo
Craster, Richard V.
Rodríguez-Fortuño, Francisco J.
contents Surface plasmon polaritons (SPPs) are central to application areas such as sensing, energy harvesting, and nanoscale optics, and are typically excited via spatial structuring -- an approach lacking dynamic control. We demonstrate that step-like time modulation allows the excitation and out-coupling of SPPs through modulating a dispersive Drude-like metal thereby modelling realistic transparent conducting oxides; this establishes a pathway for the active control and extraction of plasmons in experimentally viable time-varying systems. Using finite-difference time-domain simulations we show that time modulation facilitates both the launching and radiation of surface plasmons with frequencies governed by the dispersion of the bounding media. Our results also reveal the generation of time-reflected waves and the emergence of a magnetostatic mode required for matching boundary conditions at the temporal interface.
format Preprint
id arxiv_https___arxiv_org_abs_2507_05126
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Surface Plasmon Polariton Excitation in Time-modulated Media
Raziman, T. V.
Touboul, Marie
Sapienza, Riccardo
Craster, Richard V.
Rodríguez-Fortuño, Francisco J.
Optics
Surface plasmon polaritons (SPPs) are central to application areas such as sensing, energy harvesting, and nanoscale optics, and are typically excited via spatial structuring -- an approach lacking dynamic control. We demonstrate that step-like time modulation allows the excitation and out-coupling of SPPs through modulating a dispersive Drude-like metal thereby modelling realistic transparent conducting oxides; this establishes a pathway for the active control and extraction of plasmons in experimentally viable time-varying systems. Using finite-difference time-domain simulations we show that time modulation facilitates both the launching and radiation of surface plasmons with frequencies governed by the dispersion of the bounding media. Our results also reveal the generation of time-reflected waves and the emergence of a magnetostatic mode required for matching boundary conditions at the temporal interface.
title Surface Plasmon Polariton Excitation in Time-modulated Media
topic Optics
url https://arxiv.org/abs/2507.05126