activity
20242026
collaborators

5 papers

physics.optics2026

Optical Poling Reveals Hidden Molecular Restructuring in Multimode Fibers, Unlocking Ultra-Efficient Third-Order Nonlinearities

Maxime Jonard, Thomas Larqué, Dan-Esli Bouyou Bouyou +10

Optical poling is a well-established technique for inducing χ^{(2)} nonlinearity, yet its impact on silica's molecular structure remains unexplored. Here, we report the first dire…

physics.optics2026

Resonant optical tunnelling in planar three-layer photonic microstructures

Yago Arosa, Alejandro Doval, Raúl de la Fuente

We present a unified analytical framework for resonant optical tunnelling in three-layer photonic systems embedded in a transparent dielectric medium. Compact expressions for the t…

physics.optics2025

Spatio-spectral light-by-light moulding in multimode fibre

Yago Arosa, Tigran Mansuryan, Arnaud Poisson +8

Controlling complex light waves to achieve desired behaviours or characteristics on demand presents a significant challenge. This task becomes even more complicated when manipulati…

physics.optics2025

Coupled surface plasmon and resonant optical tunnelling in symmetric optical microcavities

Alejandro Doval, Yago Arosa, Raúl de la Fuente

A symmetrical structure consisting of a low refractive index dielectric layer between two metallic films, i.e. an optical cavity, surrounded by a semi-infinite dielectric medium of…

physics.optics2024

Modelling resonant transmission in a Fabry-Perot/Surface-Plasmon microcavity

Yago Arosa, Alejandro Doval, Raúl de la Fuente

Coupled surface plasmons arise in the surfaces of a dielectric layer between two metallic media when a dim wave propagating in the dielectric generates resonant free charge oscilla…