Exploring the impact of longitudinal modulation on the twisting angle in Pancharatnam-Berry phase-based waveguides

A circularly polarized (CP) beam propagating in a rotated anisotropic material acquires an additional phase delay proportional to the local rotation angle. This phase delay is a particular kind of geometric phase, the Pancharatnam-Berry phase (PBP), stemming from the path of the beam polarization on...

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Veröffentlicht in:Optics express 2023-12, Vol.31 (26), p.44283-44294
Hauptverfasser: Arumugam, Stree Vithya, Jisha, Chandroth P, Marrucci, Lorenzo, Alberucci, Alessandro, Nolte, Stefan
Format: Artikel
Sprache:eng
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Zusammenfassung:A circularly polarized (CP) beam propagating in a rotated anisotropic material acquires an additional phase delay proportional to the local rotation angle. This phase delay is a particular kind of geometric phase, the Pancharatnam-Berry phase (PBP), stemming from the path of the beam polarization on the Poincaré sphere. A transverse gradient in the geometric phase can thus be imparted by inhomogeneous rotation of the material, with no transverse gradient in the dynamic phase. A waveguide based upon this principle can be induced when the gradient accumulates in propagation, the latter requiring a longitudinal rotation in the optic axis synchronized with the natural rotation of the light polarization. Here, we evaluate numerically and theoretically the robustness of PBP-based waveguides, in the presence of a mismatch between the birefringence length and the external modulation. We find that the mismatch affects mainly the polarization of the quasi-mode, while the confinement is only slightly perturbed.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.505538