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20172020
most citedControlling light polarization by swirling surface plasmons

2 citations · 2 across the 2 of their papers we have counts for

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physics.optics2020

Excitation of Symmetry Protected Modes in a Lithium Niobate Membrane Photonic Crystal for Sensing Applications

Ayman Hoblos, Miguel Suarez, Nadège Courjal +2

Our theoretical study reveals the opportunity to develop an electric field sensor basedon the exploitation of Symmetry Protected Mode (SPM) that we excite within an electro-optical…

physics.optics2019

Revealing photonic Symmetry-Protected Modes () by Finite-Difference-Time-Domain method

A. Hoblos, M. Suarez, B. Guichardaz +3

This letter is devoted to point out a specific character of the Finite-Difference-Time-Domain method through the study of nano-structures supporting geometrical symmetry-protected…

physics.optics2019

Individual plasmonic helix for probing light chirality

Mengjia Wang, Roland Salut, Miguel Angel Suarez +2

We investigate the plasmonic nanohelix as an individual subwavelength element for locally probing light chirality. We show that an hybrid nanoantenna combining a carbon-gold core-s…

physics.optics20182 cited

Controlling light polarization by swirling surface plasmons

Mengjia Wang, Roland Salut, Huihui Lu +3

Light polarization is a key aspect of modern optics. Current methods for polarization control utilize birefringence and dichroism of anisotropic materials or of arrays of anisotrop…

physics.optics2017

Magnetic spin-orbit interaction directs Bloch surface waves

Mengjia Wang, Hongyi Zhang, Tatiana Kovalevitch +7

We study the directional excitation of optical surface waves controlled by the magnetic field of light. We theoretically predict that a spinning magnetic dipole develops a tunable…