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Achromatic wavefront forming with space-variant polarizers: Application to phase singularities and light focusing

Journal Article · · Physical Review. A
;  [1];  [2];  [3]
  1. Facultad de Ingenieria, Instituto de Fisica, J. Herrera y Reissig 565, 11300 Montevideo (Uruguay)
  2. Physikalisches Institut, Johann Wolfgang Goethe-Universitaet, PF 111932, D-60054 Frankfurt (Germany)
  3. Department of Physics, Xavier University 3800 Victory Parkway, Cincinnati, Ohio 45207 (United States)

We investigate the polarization-to-phase conversion of space-variant polarized light waves. Our analysis can be considered as an extension of Pancharatnam's phase to the case of space-variant polarization. In two particular cases - azimuthally and radially variant polarization - we found striking consequences. Using an azimuthally variant polarizer combined with a circular analyzer, it is possible to induce spin-to-orbital angular momentum exchange and to generate optical vortices of arbitrary charge. Radially variant polarizers with linear or quadratic radial dependence of the transmission direction generate nondiffracting beams or focus light, respectively. Our results are potentially relevant for the design of achromatic wavefront forming (and correcting) elements based strictly on space-variant polarization optics.

OSTI ID:
21028084
Journal Information:
Physical Review. A, Journal Name: Physical Review. A Journal Issue: 5 Vol. 76; ISSN 1050-2947; ISSN PLRAAN
Country of Publication:
United States
Language:
English

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