Litcius/Paper detail

Topological Faraday Effect for Optical Vortices in Magnetic Films

M. A. Yavorsky, M. A. Kozhaev, Andrey Yu. Fedorov, Dmitriy Vikulin, E. V. Barshak, V. N. Berzhansky, S. D. Lyashko, P. O. Kapralov, V. I. Belotelov

2023Physical Review Letters12 citationsDOI

Abstract

Here we experimentally demonstrate the topological Faraday effect-the polarization rotation caused by the orbital angular momentum of light. It is found that the Faraday effect of the optical vortex beam passing through a transparent magnetic dielectric film differs from the Faraday effect for a plane wave. The additional contribution to the Faraday rotation depends linearly on the topological charge and radial number of the beam. The effect is explained in terms of the optical spin-orbit interaction. These findings underline the importance of using the optical vortex beams for studies of magnetically ordered materials.

Topics & Concepts

Faraday effectPhysicsCondensed matter physicsFaraday rotatorOptical vortexVortexFaraday cagePolarization (electrochemistry)Angular momentumOptical isolatorMagneto-optic effectTopological quantum numberDielectricMagnetic fieldOpticsQuantum mechanicsOptical fiberPhysical chemistryChemistryThermodynamicsOrbital Angular Momentum in OpticsMagneto-Optical Properties and ApplicationsMetamaterials and Metasurfaces Applications