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Title: Electromagnetic waves generated by a hybrid dielectric-plasmonic dimer
Authors: Cao, X 
Ghandriche, A
Sini, M
Issue Date: 2025
Source: SIAM journal on applied mathematics, 2025, v. 85, no. 5, p. 1949-1975
Abstract: We know that the electric field generated by a plasmonic nano-particle (with negative permittivity) is given as a polarization of the incident electric field. Similarly, the electric field produced by a dielectric nano-particle (with positive but high permittivity) is given as a polarization of the incident magnetic field. In this work, we demonstrate that a hybrid dimer—composed of two closely coupled nano-particles, one plasmonic and the other dielectric—can polarize both the incident electric and the magnetic fields. Consequently, such hybrid dimers have the potential to modify both the electric permittivity and magnetic permeability of the surrounding medium. However, this dual modification occurs only when the two nano-particles share common resonant frequencies. We derive the asymptotic expansion of the fields generated by these hybrid dimers in the subwavelength regime for incident frequencies near their shared resonant frequencies.
Keywords: Dielectric nano-particles
Dielectric resonance
Hybrid dimer
Maxwell system
Plasmonic nano-particle
Plasmonic resonance
Publisher: Society for Industrial and Applied Mathematics
Journal: SIAM journal on applied mathematics 
ISSN: 0036-1399
EISSN: 1095-712X
DOI: 10.1137/24M1719682
Rights: © 2025 Society for Industrial and Applied Mathematics.
Copyright © by SIAM. Unauthorized reproduction of this article is prohibited.
The following publication Cao, X., Ghandriche, A., & Sini, M. (2025). Electromagnetic Waves Generated by a Hybrid Dielectric-Plasmonic Dimer. SIAM Journal on Applied Mathematics, 85(5), 1949-1975 is available at https://doi.org/10.1137/24m1719682.
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