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Dielectric Metalens: Properties and Three-Dimensional Imaging Applications

期刊

SENSORS
卷 21, 期 13, 页码 -

出版社

MDPI
DOI: 10.3390/s21134584

关键词

metasurface; dielectric metalens; aberrations; flat optics; three-dimensional imaging; display; sensing; augmented and virtual realities; depth sensing; light analysis

资金

  1. Institute of Information & communications Technology Planning and Evaluation (IITP) - Korea government (MSIT)

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Dielectric metalenses, with their unique properties of arbitrary wavefront encoding, high efficiency, and large diffraction angle, have been widely used in three-dimensional imaging applications. They are not only utilized in wearable devices and virtual reality displays, but also enable three-dimensional positioning sensing of objects.
Recently, optical dielectric metasurfaces, ultrathin optical skins with densely arranged dielectric nanoantennas, have arisen as next-generation technologies with merits for miniaturization and functional improvement of conventional optical components. In particular, dielectric metalenses capable of optical focusing and imaging have attracted enormous attention from academic and industrial communities of optics. They can offer cutting-edge lensing functions owing to arbitrary wavefront encoding, polarization tunability, high efficiency, large diffraction angle, strong dispersion, and novel ultracompact integration methods. Based on the properties, dielectric metalenses have been applied to numerous three-dimensional imaging applications including wearable augmented or virtual reality displays with depth information, and optical sensing of three-dimensional position of object and various light properties. In this paper, we introduce the properties of optical dielectric metalenses, and review the working principles and recent advances in three-dimensional imaging applications based on them. The authors envision that the dielectric metalens and metasurface technologies could make breakthroughs for a wide range of compact optical systems for three-dimensional display and sensing.

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