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Aperture-layout-induced effects in polarization-resolved multifocal metalenses based on plasmonic quarter-wave plates

  • Xingling Pan
  • , Yi Ouyang
  • , Ziru Cai
  • , Zhiming Chen
  • , Yingtao Ding
  • , Ziwei Zheng
  • , Fei Ding

Research output: Contribution to journalArticlepeer-review

Abstract

Polarization-resolved metasurfaces offer a compact platform for simultaneous control of wavefront and polarization; however, the role of aperture-level multiplexing in device performance remains largely unexplored. Here, we design and experimentally demonstrate two polarization-resolved multifocal metalenses based on plasmonic quarter-wave plates: a segmented metasurface and an interleaved metasurface. Under circularly polarized illumination, both devices generate four focal spots with independently prescribed linear polarization states, enabling simultaneous circular-to-linear polarization conversion and multifocal phase modulation. The two layouts are experimentally characterized and compared in terms of polarization-resolved focal-field distributions, angle-of-linear-polarization errors, and degree of linear polarization over a broadband wavelength range. These results provide practical guidelines for advanced polarization shaping and integrated flat photonic devices.

Original languageEnglish
Pages (from-to)3333-3336
Number of pages4
JournalOptics Letters
Volume51
Issue number12
DOIs
Publication statusPublished - 15 Jun 2026

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