Geometric metasurfaces have shown superior phase control capacity owing to the geometric nature of their phase profile. The existing geometric metasurfaces are generally composed of metal-dielectric composites or all-dielectric subwavelength structures. Here, a novel configuration, all-metallic structure, is proposed to achieve broadband and high-performance electromagnetic wavefront manipulation based on the geometric phase. A catenary model is built to describe the optical dispersion and guide the design of metasurfaces. Two metadevices including a beam deflector and a hologram are designed and experimentally demonstrated in the infrared regime, with the measured optical efficiency up to 84% (the simulated efficiency reaches 93%). Compare...
Conventional optics depend on the gradual accumulation of spatially dependent phase shifts imparted ...
All-dielectric Huygens’ metasurfaces have been widely used in wavefront manipulation through multipo...
Recent transmissive optical metamaterials that leverage a generalized form of Snell’s law to induce ...
Metasurfaces are ultra-thin patterned structures that emerged recently as planar metadevices [1] cap...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...
We employ the generalized Huygens principle to design and fabricate highly transparent dielectric me...
Metasurfaces have attracted large interest in recent years due to their relatively simple fabricatio...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
This thesis presents highly efficient metamaterial devices for wavefront manipulation from microwave...
This thesis presents highly efficient metamaterial devices for wavefront manipulation from microwave...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...
Metasurfaces with local phase tuning by subwavelength elements promise unprecedented possibilities f...
Metasurfaces provide a versatile platform for manipulating the wavefront of light using planar nanos...
The development of metamaterials has opened the door for engineering electromagnetic properties by s...
Conventional optics depend on the gradual accumulation of spatially dependent phase shifts imparted ...
All-dielectric Huygens’ metasurfaces have been widely used in wavefront manipulation through multipo...
Recent transmissive optical metamaterials that leverage a generalized form of Snell’s law to induce ...
Metasurfaces are ultra-thin patterned structures that emerged recently as planar metadevices [1] cap...
Self-accelerating beams show considerable captivating phenomena and applications owing to their tran...
We employ the generalized Huygens principle to design and fabricate highly transparent dielectric me...
Metasurfaces have attracted large interest in recent years due to their relatively simple fabricatio...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
This thesis presents highly efficient metamaterial devices for wavefront manipulation from microwave...
This thesis presents highly efficient metamaterial devices for wavefront manipulation from microwave...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...
Metasurfaces with local phase tuning by subwavelength elements promise unprecedented possibilities f...
Metasurfaces provide a versatile platform for manipulating the wavefront of light using planar nanos...
The development of metamaterials has opened the door for engineering electromagnetic properties by s...
Conventional optics depend on the gradual accumulation of spatially dependent phase shifts imparted ...
All-dielectric Huygens’ metasurfaces have been widely used in wavefront manipulation through multipo...
Recent transmissive optical metamaterials that leverage a generalized form of Snell’s law to induce ...