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Shape optimization for high efficiency metasurfaces: theory and implementation

  • P. Dainese
  • , L. Marra
  • , D. Cassara
  • , A. Portes
  • , J. Oh
  • , J. Yang
  • , A. Palmieri
  • , J.R. Rodrigues
  • , A.H. Dorrah
  • , F. Capasso

Research output: Working paperPreprintProfessionalpeer-review

173 Downloads (Pure)

Abstract

Complex non-local behavior makes designing high efficiency and multifunctional metasurfaces a significant challenge. While using libraries of meta-atoms provide a simple and fast implementation methodology, pillar to pillar interaction often imposes performance limitations. On the other extreme, inverse design based on topology optimization leverages non-local coupling to achieve high efficiency, but leads to complex and difficult to fabricate structures. In this paper, we demonstrate numerically and experimentally a shape optimization method that enables high efficiency metasurfaces while providing direct control of the structure complexity. The proposed method provides a path towards manufacturability of inverse-designed high efficiency metasurfaces.
Original languageEnglish
PublisherarXiv.org
Number of pages36
Volume2405.03930
DOIs
Publication statusPublished - 7 May 2024
Externally publishedYes

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