arXiv · 1002.0646
Paraxial propagation in amorphous optical media with screw dislocation
Abstract
We study paraxial beam propagation parallel to the screw axis of a dislocated amorphous medium that is optically weakly inhomogeneous and isotropic. The effect of the screw dislocation on the beam's orbital angular momentum is shown to change the optical vortex strength, rendering vortex annihilation or generation possible. Furthermore, the dislocation is shown to induce a weak \textit{biaxial} anisotropy in the medium due to the elasto-optic effect, which changes the beam's spin angular momentum as well as causing precession of the polarization. We derive the equations of motion of the beam and demonstrate the optical Hall effect in the dislocated medium. Its application with regard to determining the Burgers vector as well as the elasto-optic coefficients of the medium is explained.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
L. Mashhadi, M. Mehrafarin. 2010-02-03. Paraxial propagation in amorphous optical media with screw dislocation. https://doi.org/10.1088/2040-8978%2F12%2F3%2F035703
Cite the original work for its findings. Save a collection to share your selection of sources.