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

Wolfgang Dultz1, Erna Frins1, Bernd Hils1, Heidrun Schmitzer2
  1. 1Instituto de Física, Facultad de Ingeniería, Universidad de la República de Uruguay (Uruguay)
  2. 2Department of Physics, Xavier University (USA)

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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.

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@inproceedings{dgao123-p1, title = {Geodesics on the surface of stationary phase for a twisted light beam}, author = {Wolfgang Dultz, Erna Frins, Bernd Hils, Heidrun 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