4.6 Article

Elliptic Gaussian optical vortices

期刊

PHYSICAL REVIEW A
卷 95, 期 5, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.95.053805

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资金

  1. RF President's grants for support of leading scientific schools [NSh-9498.2016.9]
  2. Young Candidates of Science [MK-2390.2017.2]
  3. Russian Foundation for Basic Research (RFBR) [15-07-01174, 15-47-02492, 16-29-11698, 16-47-630483]
  4. Ministry of Education and Science of the Russian Federation

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We analyze an elliptic optical vortex embedded into a Gaussian beam. Explicit closed expressions for the complex amplitude and normalized orbital angular momentum (OAM) of such a beam are derived. The resulting elliptic Gaussian vortex (EGV) is shown to have a fractional OAM whose maximal value equal to the topological charge n of a conventional Gauss vortex is attained for a zero-ellipticity vortex. As the beam propagates, the major axis of the intensity ellipse in the beam cross section rotates, making the angle of 90 degrees between the initial plane and the focal plane of a spherical lens. On the major axis of the intensity ellipse, there are n intensity nulls of the EGV, with the distance between them varying with propagation distance and varying ellipticity. The distance between the intensity nulls is found to be maximal in the focal plane for a given ellipticity. For zero ellipticity, all intensity nulls get merged into a single n-times degenerate on-axis intensity null. The experimental results are in good agreement with theory.

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