Evolution of vortices created by conical diffraction in biaxial crystals versus orbital angular momentum
arXiv:2010.13425 · doi:10.1016/j.optmat.2020.110504
Abstract
Light states evolution versus their fractional orbital angular momentum (OAM) has been analyzed in the conical diffraction process occurring through biaxial crystals. Experimental results are provided by a non-degenerate cascade of KGd(WO) and BiZnOBO biaxial crystals. The continuous /photon increasing of the fractional OAM in passing through integer values was operated with the help of the spin-orbit coupling in the BiZnOBO crystal. The phase of the state light and its vortices were visualized by interference patterns with a reference beam. The evolution of the fractional OAM value is accompanied by a continuous evolution of pairs of vortices with opposite signs and linked by a discontinuous phase line. The phase pattern evolution around half-integer OAM is observed to be continuous. In other cases, the evolution can be interrupted by the breaking of a discontinuous phase line and a new pair of vortices with opposite charges is born.
Optical Materials, Elsevier, 2020