most citedFull control of electric and magnetic light-matter interactions through a plasmonic nanomirror on a near-field tip

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physics.optics20241 cited

Skyrmion Generation in a Plasmonic Nanoantenna through the Inverse Faraday Effect

Xingyu Yang, Ye Mou, Bruno Gallas +2

Skyrmions are topological structures characterized by a winding vectorial configuration that provides a quantized topological charge. In magnetic materials, skyrmions are localized…

physics.optics2024

Nanoscale Control over Magnetic Light-Matter Interactions

Benoît Reynier, Eric Charron, Obren Markovic +4

Light-matter interactions are frequently perceived as predominantly influenced by the electric optical field, with the magnetic component of light often overlooked. Nonetheless, th…

physics.optics2024

Femtosecond drift photocurrents generated by an inversely designed plasmonic antenna

Ye Mou, Xingyu Yang, Marlo Vega +4

Photocurrents play a crucial role in various applications, including light detection, photovoltaics, and THz radiation generation. Despite the abundance of methods and materials fo…

physics.optics2023

A Reversed Inverse Faraday Effect

Ye Mou, Xingyu Yang, Bruno Gallas +1

The inverse Faraday effect is a magneto-optical process allowing the magnetization of matter by an optical excitation carrying a non-zero spin of light. In particular, a right circ…

physics.optics2023

A magnetic monopole nanoantenna

Benoît Reynier, Xingyu Yang, Bruno Gallas +2

Magnetic monopoles are hypothetical particles that, like electric monopoles which generate electric fields, are at the origin of magnetic fields. Despite many efforts, to date, the…

physics.optics2023

An achiral magnetic photonic antenna as a tunable nanosource of superchiral light

Lingfei Cui, Xingyu Yang, Benoît Reynier +4

Sensitivity to molecular chirality is crucial for many fields, from biology and chemistry to the pharmaceutical industry. By generating superchiral light, nanophotonics has brought…