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August 27, 2018SHILAP Revista de lepidopterología282 citationsOpen Access

Optical metasurfaces: new generation building blocks for multi-functional optics

DNDragomir N. NeshevIAIgor Aharonovich

Key Points

  • To review the state of the art in optical metasurfaces and outline a roadmap for their use in next-generation multifunctional optical devices.
  • Synthesized advances in flat optics and resonant nanostructures designed to replace conventional bulky refractive elements.
  • Evaluated mechanisms of light control, specifically phase, polarization, and emission manipulation.
  • Mapped current applications across quantum technologies, holographic displays, and optical sensing.
  • Metasurfaces manipulate light via scattering from resonant nanostructures rather than traditional propagation and refraction through bulk materials.
  • Nanostructure-based scattering enables simultaneous, multi-parameter control over light phase, polarization, and emission profiles.
  • Identified critical roadmaps for deploying flat optical metasurfaces into active light generation, optical detection, and quantum-enabled platforms.

Abstract

Optical metasurfaces (OMs) have emerged as promising candidates to solve the bottleneck of bulky optical elements. OMs offer a fundamentally new method of light manipulation based on scattering from resonant nanostructures rather than conventional refraction and propagation, thus offering efficient phase, polarization, and emission control. This perspective highlights state of the art OMs and provides a roadmap for future applications, including active generation, manipulation and detection of light for quantum technologies, holography and sensing.

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Cite This Study

Neshev et al. (2018) studied this question.

synapsesocial.com/papers/69caaba47fa6f77f515f8169https://doi.org/10.1038/s41377-018-0058-1
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