Cusp beams are one type of complex structured beams with unique multiple self-accelerating channels and needle-like field structures owning great potentials to advance applications such as particle micromanipulation and super-resolution imaging. The traditional method to generate optical catastrophe is based on cumbrous reflective diffraction optical elements, which makes optical system complicated and hinders the nanophotonics integration. Here we design geometric phase based ultrathin plasmonic metasurfaces made of nanoslit antennas to produce three-dimensional (3D) optical cusp beams with variable numbers of self-accelerating channels in a broadband wavelength range. The entire beam propagation profiles of the cusp beams generated from t...
© 2018, The Author(s). Optical metasurfaces (OMs) have emerged as promising candidates to solve the ...
peer-reviewedMetasurfaces, the two-dimensional (2D) metamaterials, facilitate the implementation of...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...
Most of the self-accelerating beams have monotonous single-channel bending structures, which greatly...
Twisting light in both phase and intensity has recently drawn great interests in various fields rela...
We report on a novel kind of accelerating beams that follow parabolic paths in free space. In fact, ...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
Metamaterials are artificial materials, which consist of periodic or non-periodic structures of manm...
Metamaterials are artificial materials that are made from periodically arranged structures, showing ...
Metasurfaces have revolutionized photonics due to their ability to shape phase fronts as requested a...
We propose a simple yet efficient method for generating in-plane hollow beams with a nearly full cir...
The optical tweezer is one of the important techniques for contactless manipulation in biological re...
We propose a comprehensive scheme for the efficient design of graded optical metasurfaces capable of...
A full propagation analysis on both fold-type and cusp-type caustic optical beams under various setu...
Perfect vortex (PV) beams possessing annular intensity profiles independent of topological charges p...
© 2018, The Author(s). Optical metasurfaces (OMs) have emerged as promising candidates to solve the ...
peer-reviewedMetasurfaces, the two-dimensional (2D) metamaterials, facilitate the implementation of...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...
Most of the self-accelerating beams have monotonous single-channel bending structures, which greatly...
Twisting light in both phase and intensity has recently drawn great interests in various fields rela...
We report on a novel kind of accelerating beams that follow parabolic paths in free space. In fact, ...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
Metamaterials are artificial materials, which consist of periodic or non-periodic structures of manm...
Metamaterials are artificial materials that are made from periodically arranged structures, showing ...
Metasurfaces have revolutionized photonics due to their ability to shape phase fronts as requested a...
We propose a simple yet efficient method for generating in-plane hollow beams with a nearly full cir...
The optical tweezer is one of the important techniques for contactless manipulation in biological re...
We propose a comprehensive scheme for the efficient design of graded optical metasurfaces capable of...
A full propagation analysis on both fold-type and cusp-type caustic optical beams under various setu...
Perfect vortex (PV) beams possessing annular intensity profiles independent of topological charges p...
© 2018, The Author(s). Optical metasurfaces (OMs) have emerged as promising candidates to solve the ...
peer-reviewedMetasurfaces, the two-dimensional (2D) metamaterials, facilitate the implementation of...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...