peer-reviewedTraditionally, symmetric accelerating beam (SAB) generation requires bulky optical components, which hinder the miniaturization of optical systems. Recently, metasurfaces, which are composed of sub-wavelength features, have provided a captivating boulevard for the realization of ultra-thin and flat optical devices. Therefore, for the first time, we design and simulate all-dielectric metasurfaces based on an optical caustic approach to generate highly efficient SABs by tailoring the phase of an incident wave. The designed metasurface utilizes spatial distribution of optimized Nb2O5 nano-rods on SiO2 substrate to perform the phase modulation. In contrast with conventional accelerating beams, the generated SABs can fo...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metasurfaces are a novel class of optical devices, made up of an array of subwavelength scatterers t...
We report the design and experimental demonstration of a ‘universal’ reconfigurable metasurface, whi...
Traditionally, symmetric accelerating beam (SAB) generation requires bulky optical components, whic...
Metamaterials XII (2019: Prague, Czech Republic )All-dielectric metasurfaces are unique component to...
peer-reviewedIn recent years, metasurfaces have provided a tempting path to replace conventional op...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...
Metasurfaces, two-dimensional lattices of nanoscale resonators, offer unique opportunities for funct...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
Optical metasurfaces offer unprecedented flexibility in light wave manipulation but suffer weak reso...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
In integrated circuits, an important prerequisite for success is that every transistor can be driven...
In the last years, increasing interest has grown on the synthesis of light-weight, miniaturized surf...
Metasurfaces, composed of specifically designed subwavelength units in a two-dimensional plane, offe...
Metamaterials are artificially structured composites. They can be used to modulate electromagnetic w...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metasurfaces are a novel class of optical devices, made up of an array of subwavelength scatterers t...
We report the design and experimental demonstration of a ‘universal’ reconfigurable metasurface, whi...
Traditionally, symmetric accelerating beam (SAB) generation requires bulky optical components, whic...
Metamaterials XII (2019: Prague, Czech Republic )All-dielectric metasurfaces are unique component to...
peer-reviewedIn recent years, metasurfaces have provided a tempting path to replace conventional op...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...
Metasurfaces, two-dimensional lattices of nanoscale resonators, offer unique opportunities for funct...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
Optical metasurfaces offer unprecedented flexibility in light wave manipulation but suffer weak reso...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
In integrated circuits, an important prerequisite for success is that every transistor can be driven...
In the last years, increasing interest has grown on the synthesis of light-weight, miniaturized surf...
Metasurfaces, composed of specifically designed subwavelength units in a two-dimensional plane, offe...
Metamaterials are artificially structured composites. They can be used to modulate electromagnetic w...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metasurfaces are a novel class of optical devices, made up of an array of subwavelength scatterers t...
We report the design and experimental demonstration of a ‘universal’ reconfigurable metasurface, whi...