Metasurfaces, kinds of planar ultrathin metamaterials, are able to modify the polarization, phase, and amplitude of physical fields of optical light by designed periodic subwavelength structures, attracting great interest in recent years. Based on the different type of the material, optical metasurfaces can be separated in two categories by the materials: one is metal and the other is dielectric. Metal metasurfaces rely on the surface plasma oscillations of subwavelength metal particles. Nevertheless, the loss caused by the metal structures has been a trouble, especially for devices working in transmit modes. The dielectric metasurfaces are based on the Faraday-Tyndall scattering of high-index dielectric light scattering particles. By reaso...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
Metasurfaces, the two-dimensional analog of metamaterials, have attracted progressively increasing a...
Two-dimensional metasurfaces are widely focused on for their ability for flexible light manipulation...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Photonic metasurfaces, that is, two-dimensional arrangements of designed plasmonic or dielectric res...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
We review the basic physics and applications of a special class of planar metamaterials, often calle...
International audienceMetasurfaces are artificial two-dimensional (2D) planar surfaces that consist ...
International audienceMetasurfaces are artificial two-dimensional (2D) planar surfaces that consist ...
International audienceMetasurfaces are artificial two-dimensional (2D) planar surfaces that consist ...
Thesis (Master's)--University of Washington, 2017-06Metasurfaces, the 2D analogue of bulk metamateri...
Electromagnetic metamaterials (MMs) and metasurfaces (MSs) are artificial media and surfaces with su...
International audienceOptical metamaterials are an exciting new field in optical science. A rapidly ...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
Metasurfaces, the two-dimensional analog of metamaterials, have attracted progressively increasing a...
Two-dimensional metasurfaces are widely focused on for their ability for flexible light manipulation...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Photonic metasurfaces, that is, two-dimensional arrangements of designed plasmonic or dielectric res...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
We review the basic physics and applications of a special class of planar metamaterials, often calle...
International audienceMetasurfaces are artificial two-dimensional (2D) planar surfaces that consist ...
International audienceMetasurfaces are artificial two-dimensional (2D) planar surfaces that consist ...
International audienceMetasurfaces are artificial two-dimensional (2D) planar surfaces that consist ...
Thesis (Master's)--University of Washington, 2017-06Metasurfaces, the 2D analogue of bulk metamateri...
Electromagnetic metamaterials (MMs) and metasurfaces (MSs) are artificial media and surfaces with su...
International audienceOptical metamaterials are an exciting new field in optical science. A rapidly ...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...