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High efficiency double-wavelength dielectric metasurface lenses with dichroic birefringent meta-atoms.

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TLDR
A double-wavelength metasurface based on polarization dependent dielectric meta-atoms that control the phases of two orthogonal polarizations independently is proposed and demonstrated.
Abstract
Metasurfaces are ultrathin optical structures that manipulate optical wavefronts. Most metasurface devices which deflect light are designed for operation at a single wavelength, and their function changes as the wavelength is varied. Here we propose and demonstrate a double-wavelength metasurface based on polarization dependent dielectric meta-atoms that control the phases of two orthogonal polarizations independently. Using this platform, we design lenses that focus light at 915 and 780 nm with perpendicular linear polarizations to the same focal distance. Lenses with numerical apertures up to 0.7 and efficiencies from 65% to above 90% are demonstrated. In addition to the high efficiency and numerical aperture, an important feature of this technique is that the two operation wavelengths can be chosen to be arbitrarily close. These characteristics make these lenses especially attractive for fluorescence microscopy applications.

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Citations
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Journal ArticleDOI

Miniature optical planar camera based on a wide-angle metasurface doublet corrected for monochromatic aberrations

TL;DR: A miniature flat camera integrating a monolithic metasurface lens doublet corrected for monochromatic aberrations, and an image sensor is demonstrated with nearly diffraction-limited image quality, indicating the potential of this technology in the development of optical systems for microscopy, photography, and computer vision.
Journal ArticleDOI

MEMS-tunable dielectric metasurface lens.

TL;DR: In this paper, the authors demonstrate tunable metasurface doublets, based on microelectromechanical systems (MEMS), with more than 60 diopters (about 4%) change in the optical power upon a 1-μm movement of one metasuran, and a scanning frequency that can potentially reach a few kHz.
Journal ArticleDOI

A review of dielectric optical metasurfaces for wavefront control

TL;DR: In this article, a review of the recent developments in dielectric structures for shaping optical wavefronts is presented with an outlook on future potentials and challenges that need to be overcome.
Journal ArticleDOI

Highly tunable elastic dielectric metasurface lenses

TL;DR: In this article, the authors demonstrate highly tunable dielectric metasurface devices based on subwavelength thick silicon nano-posts encapsulated in a thin transparent elastic polymer.
Journal ArticleDOI

Composite functional metasurfaces for multispectral achromatic optics.

TL;DR: Dense vertical stacking of independent metasurfaces is introduced, where each layer is made from a different material, and is optimally designed for a different spectral band, to alleviate the chromatic aberrations of individual diffractive elements.
References
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Journal ArticleDOI

Flat Optics With Designer Metasurfaces

TL;DR: This Review focuses on recent developments on flat, ultrathin optical components dubbed 'metasurfaces' that produce abrupt changes over the scale of the free-space wavelength in the phase, amplitude and/or polarization of a light beam.
Journal ArticleDOI

Planar Photonics with Metasurfaces

TL;DR: Progress in the optics of metasurfaces is reviewed and promising applications for surface-confined planar photonics components are discussed and the studies of new, low-loss, tunable plasmonic materials—such as transparent conducting oxides and intermetallics—that can be used as building blocks for metAsurfaces will complement the exploration of smart designs and advanced switching capabilities.
Journal ArticleDOI

Dielectric metasurfaces for complete control of phase and polarization with subwavelength spatial resolution and high transmission

TL;DR: A metasurface platform based on high-contrast dielectric elliptical nanoposts that provides complete control of polarization and phase with subwavelength spatial resolution and an experimentally measured efficiency ranging from 72% to 97%, depending on the exact design.
Journal ArticleDOI

Dielectric gradient metasurface optical elements.

TL;DR: The experimental realization and operation of dielectric gradient metasurface optical elements capable of also achieving high efficiencies in transmission mode in the visible spectrum are described.
Journal ArticleDOI

All-dielectric metamaterials

TL;DR: This Review presents a broad outline of the whole range of electromagnetic effects observed using all-dielectric metamaterials: high-refractive-index nanoresonators, metasurfaces, zero-index met amaterials and anisotropic metammaterials, and discusses current challenges and future goals for the field at the intersection with quantum, thermal and silicon photonics.
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These characteristics make these lenses especially attractive for fluorescence microscopy applications.