Geodesics on the surface of stationary phase for a twisted light beam

Physics Institute, Facultad de Ingeniería, Universidad de la República, Uruguay, Physikalisches Institut, Univ.Frankfurt,
2 Xavier University Cincinnati,USA

requalivahanus@t-online.de

Abstract

The region of the stationary phase of a monochromatic light beam propagating through two twisted slits was calculated with an elementary wave theory according to Huygens together with its analytic continuation; its screw like shape was experimentally verified [1,2]. To obtain a feeling for classical particle trajectories we calculate the geodesics on this surface (H) using the tools of differential geometry for curved space-time. H is twisted but its torsion tensor is zero and we introduce a metric on H, as in the case of the hyperbolic paraboloid [3]. We found geodesics which spread out after the slits corresponding to momentum conservation and we developed a simple demonstration model for geodesics on a curved manifold using a toy engine. [1,2] E.Frins et al. DGAO-Proc. 2018,2019 [3] G.Bernacchi; Tensors made easy, Problem 43.

Keywords

Theoretische Grundlagen Diffraktive Optik Beugungstheorie
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@inproceedings{dgao123-p1, title = {Geodesics on the surface of stationary phase for a twisted light beam}, author = {W. Dultz, E. Frins, B. Hils, H. Schmitzer}, booktitle = {DGaO-Proceedings, 123. Jahrestagung}, year = {2022}, publisher = {Deutsche Gesellschaft für angewandte Optik e.V.}, issn = {1614-8436}, note = {Poster P1} }
123. Jahrestagung der DGaO · Pforzheim · 2022