Plasma q-plate for generation and manipulation of intense optical vortices

Kenan Qu, Qing Jia, and Nathaniel J. Fisch
Phys. Rev. E 96, 053207 – Published 28 November 2017

Abstract

An optical vortex is a light wave with a twisting wavefront around its propagation axis and null intensity in the beam center. Its unique spatial structure of field lends itself to a broad range of applications, including optical communication, quantum information, superresolution microscopy, and multidimensional manipulation of particles. However, accessible intensity of optical vortices have been limited to material ionization threshold. This limitation might be removed by using the plasma medium. Here we propose the design of suitably magnetized plasmas which, functioning as a q-plate, leads to a direct conversion from a high-intensity Gaussian beam into a twisted beam. A circularly polarized laser beam in the plasma accumulates an azimuthal-angle-dependent phase shift and hence forms a twisting wavefront. Our three-dimensional particle-in-cell simulations demonstrate extremely high-power conversion efficiency. The plasma q-plate can work in a large range of frequencies spanning from terahertz to the optical domain.

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  • Received 8 September 2017

DOI:https://doi.org/10.1103/PhysRevE.96.053207

©2017 American Physical Society

Physics Subject Headings (PhySH)

Atomic, Molecular & OpticalPlasma Physics

Authors & Affiliations

Kenan Qu, Qing Jia, and Nathaniel J. Fisch

  • Department of Astrophysical Sciences, Princeton University, Princeton, New Jersey 08544, USA

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Issue

Vol. 96, Iss. 5 — November 2017

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