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20132025
most citedPhysically Agnostic Quasinormal Mode Expansion in Time Dispersive Structures:from Mechanical Vibrations to Nanophotonic Resonances

9 citations · 9 across the 3 of their papers we have counts for

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physics.optics2025

Complete design of a fully integrated graphene-based compact plasmon coupler for the infrared

Aswani Natarajan, Guillaume Demésy, Gilles Renversez

A fully integrated waveguide-based, efficient surface plasmon coupler composed of a realistic non-tapered dielectric waveguide with graphene patches and sheet is designed and optim…

physics.optics20249 cited

Physically Agnostic Quasinormal Mode Expansion in Time Dispersive Structures:from Mechanical Vibrations to Nanophotonic Resonances

André Nicolet, Guillaume Demésy, Frédéric Zolla +3

Resonances, also known as quasi normal modes (QNM) in the non-Hermitian case, play an ubiquitous role in all domains of physics ruled by wave phenomena, notably in continuum mechan…

physics.optics2020

A continuous family of Exact Dispersive Quasi-Normal Modal (DQNM) Expansions for dispersive photonic structures

Minh Duy Truong, André Nicolet, Guillaume Demésy +1

In photonics, Dispersive Quasi-Normal Modes (DQNMs) refer to optical resonant modes, solutions of spectral problems associated with Maxwell's equations for open photonic structures…

physics.optics2018

Photonics in highly dispersive media: The exact modal expansion

Frédéric Zolla, André Nicolet, Guillaume Demésy

We present exact modal expansions for photonic systems including highly dispersive media. The formulas, based on a simple version of the Keldysh theorem, are very general since bot…

physics.optics2013

Finite Element Method (Chapter from "Gratings: Theory and Numeric Applications")

Guillaume Demésy, Frédéric Zolla, André Nicolet +1

In this chapter, we demonstrate a general formulation of the Finite Element Method allowing to calculate the diffraction efficiencies from the electromagnetic field diffracted by a…