arXiv · physics/0606200
Polarization rotation enhancement by high-order waveguide mode coupling in magnetophotonic crystals
Abstract
Inter-modal coupling in photonic bandgap optical channels in magnetic films is used to leverage the transverse-electric (TE) to transverse-magnetic (TM) mode conversion due to the Faraday Effect. The underlying mechanism is traced to the dependence of the grating coupling-constant on the modal refractive index and the mode profile of the propagating beam, a feature that arises in waveguide propagation and is not present in normal-incidence stack magnetophotonic crystals. Large changes in polarization near the band edges are observed in first and second orders as a result of the photonic bandgap structure. Extreme sensitivity to linear birefringence exists in second order.
Explore related subjects
Keep this discovery
Miguel Levy, Rong Li. 2006-06-22. Polarization rotation enhancement by high-order waveguide mode coupling in magnetophotonic crystals. https://arxiv.org/abs/physics/0606200
Cite the original work for its findings. Save a collection to share your selection of sources.