Plasmonic Metalens to Generate an Airy Beam

Author:

Sosa-Sánchez Citlalli1ORCID,Téllez-Limón Ricardo2ORCID

Affiliation:

1. Unidad Foránea Monterrey, Centro de Investigación Científica y de Educación Superior de Ensenada, Alianza Centro 504, PIIT, Apodaca 66629, Mexico

2. CONAHCYT—Unidad Foránea Monterrey, Centro de Investigación Científica y de Educación Superior de Ensenada, Alianza Centro 504, PIIT, Apodaca 66629, Mexico

Abstract

Airy beams represent an important type of non-diffracting beams—they are the only non-diffracting wave in one dimension, and thus they can be produced with a cylindrical geometry that modifies a wavefront in one dimension. In this paper, we show the design of a cylindrical plasmonic metalens consisting of an array of nanoslits in a gold thin layer that modulates the phase of a Gaussian beam to generate an airy beam propagating in free space. Based on the numerical results, we show that it is possible to generate an airy beam by only matching the phase of wavefronts coming out from the array of gold nanoslits to the airy beam phase at plane z=0. We numerically demonstrate that the airy beam exhibits bending over propagation and self-healing properties. The transmission efficiency is around 60%. The simplicity of the proposed structure open new perspectives in the design of flat metasurfaces for light-focusing applications.

Funder

CONAHCYT—Basic Scientific Research

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference48 articles.

1. Nonspreading wave packets;Berry;Am. J. Phys.,1979

2. Accelerating finite energy Airy beams;Siviloglou;Opt. Lett.,2007

3. Full characterization of Airy beams under physical principles;Phys. Rev. A—At. Mol. Opt. Phys.,2014

4. Airy beams and accelerating waves: An overview of recent advances;Efremidis;Optica,2019

5. Acoustic non-diffracting Airy beam;Lin;J. Appl. Phys.,2015

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