6 citations · 7 across the 6 of their papers we have counts for
6 papers
True Circular Dichroism in Optically Active Achiral Metasurfaces and Its Relation to Chiral Near-Fields
Mathieu Nicolas, Per Magnus Walmsness, Jayeeta Amboli +6
Optically active achiral metasurfaces offer a promising way to detect chiral molecules based on chiroptic methods. The combination of plasmonic enhanced circular dichroism and reve…
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…
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…
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…
Full control of electric and magnetic light-matter interactions through a plasmonic nanomirror on a near-field tip
Benoît Reynier, Eric Charron, Obren Markovic +5
Light-matter interactions are often considered governed by the electric optical field only, leaving aside the magnetic component of light. However, the magnetic part plays a determ…
A Chiral Inverse Faraday Effect Mediated by an Inversely Designed Plasmonic Antenna
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 or orbital moment of light. This phen…