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Optical skyrmions in Bessel profile

JOSA A
  • Srinivasa Rao Allam
  • received 02/20/2024; accepted 04/17/2024; posted 04/18/2024; Doc. ID 522001
  • Abstract: Optical skyrmions formed in terms of polarization are topological quasi-particles and have garnered much interest in the optical community owing to their unique inhomogeneous polarization structure and simplicity in their experimental realization. These structures belong to the PoincarĂ© beams satisfying the stable topology. We theoretically investigated the non-diffracting and self-healing PoincarĂ© beams based on the superposition of two orthogonal Bessel modes by mode matching technique. These PoincarĂ© beams are topologically protected, and we suggest them as optical skyrmions. These optical skyrmions are quasi-skyrmions and their range of propagation depends on the range of superposed Bessel modes. The polarization structure of these optical skyrmions has no change upon the propagation. A necessary experimental configuration is suggested to realize variable order skyrmions in Bessel modes experimentally. This work can provide a new direction for the generation of skyrmions with completely new textures and features with reference to existing skyrmions originating from Laguerre-Gaussian modes.