English

Polarization-controlled evolution of light transverse modes and associated Pancharatnam geometric phase in orbital angular momentum

Optics 2015-03-13 v2

Abstract

We present an easy, efficient and fast method to generate arbitrary linear combinations of light orbital angular momentum eigenstates =±2\ell=\pm 2 starting from a linearly polarized TEM00_{00} laser beam. The method exploits the spin-to-orbital angular momentum conversion capability of a liquid-crystal-based qq-plate and a Dove prism inserted in a Sagnac polarizing interferometer. The nominal generation efficiency is 100\%, being limited only by reflection and scattering losses in the optical components. When closed paths are followed on the polarization Poincar\'{e} sphere of the input beam, the associated Pancharatnam geometric phase is transferred unchanged to the orbital angular momentum state of the output beam.

Keywords

Cite

@article{arxiv.0909.2768,
  title  = {Polarization-controlled evolution of light transverse modes and associated Pancharatnam geometric phase in orbital angular momentum},
  author = {Ebrahim Karimi and Sergei Slussarenko and Bruno Piccirillo and Lorenzo Marrucci and Enrico Santamato},
  journal= {arXiv preprint arXiv:0909.2768},
  year   = {2015}
}

Comments

5 pages and 5 figures