Limiting amplitude principle and resonances in plasmonic structures with corners: numerical investigation
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Publication:2060101
DOI10.1016/j.cma.2021.114207OpenAlexW3134403357MaRDI QIDQ2060101
Camille Carvalho, Claire Scheid, Patrick~jun. Ciarlet
Publication date: 13 December 2021
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2021.114207
Cites Work
- Limiting absorption principle and well-posedness for the Helmholtz equation with sign changing coefficients
- On the use of perfectly matched layers at corners for scattering problems with sign-changing coefficients
- Time harmonic wave diffraction problems in materials with sign-shifting coefficients
- Exploiting the limiting amplitude principle to numerically solve scattering problems
- Stabilization of a Drude/vacuum model
- Mathematical models for dispersive electromagnetic waves: an overview
- Mesh requirements for the finite element approximation of problems with sign-changing coefficients
- A DGTD method for the numerical modeling of the interaction of light with nanometer scale metallic structures taking into account non-local dispersion effects
- T-coercivity for scalar interface problems between dielectrics and metamaterials
- T-Coercivity for the Maxwell Problem with Sign-Changing Coefficients
- The limiting-amplitude principle for the wave propagation problem with two unbounded media
- Convergence of a discontinuous Galerkin scheme for the mixed time-domain Maxwell's equations in dispersive media
- Macroscopic Maxwell’s equations and negative index materials
- RADIATION CONDITION FOR A NON-SMOOTH INTERFACE BETWEEN A DIELECTRIC AND A METAMATERIAL
- On the principle of limiting amplitude
- The limiting amplitude principle
- THE PRINCIPLE OF LIMIT AMPLITUDE
- Analysis of a Generalized Dispersive Model Coupled to a DGTD Method with Application to Nanophotonics
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