Metamaterials, or engineered materials with rationally designed, subwavelength-scale building blocks, allow us to control the behavior of physical fields in optical, microwave, radio, acoustic, heat transfer, and other applications with flexibility and performance that are unattainable with naturally available materials. In turn, metasurfaces-planar, ultrathin metamaterials-extend these capabilities even further. Optical metasurfaces offer the fascinating possibility of controlling light with surface-confined, flat components. In the planar photonics concept, it is the reduced dimensionality of the optical metasurfaces that enables new physics and, therefore, leads to functionalities and applications that are distinctly different from those...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
Metamaterials have been around for almost two decades, providing great advances in optics and photon...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Miniaturization is a strong demand of modern scientific technology. However, conventional optical co...
We review the basic physics and applications of a special class of planar metamaterials, often calle...
Metasurfaces, the two-dimensional analog of metamaterials, have attracted progressively increasing a...
We will give a review of our recent and ongoing research in the field of planar meta-materials, whic...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
Throughout human history, the control of light, electricity and heat has evolved to become the corne...
We will give a review of our recent progress in the field of planar metamaterials, which represent a...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Metamaterials is a new field of interdisciplinary research, which deals with artificial material com...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Miniaturized optical systems with planar form factors and low power consumption have many applicatio...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
Metamaterials have been around for almost two decades, providing great advances in optics and photon...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Miniaturization is a strong demand of modern scientific technology. However, conventional optical co...
We review the basic physics and applications of a special class of planar metamaterials, often calle...
Metasurfaces, the two-dimensional analog of metamaterials, have attracted progressively increasing a...
We will give a review of our recent and ongoing research in the field of planar meta-materials, whic...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
Throughout human history, the control of light, electricity and heat has evolved to become the corne...
We will give a review of our recent progress in the field of planar metamaterials, which represent a...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
Metamaterials—artificially structured materials with engineered electromagnetic properties—have enab...
Metamaterials is a new field of interdisciplinary research, which deals with artificial material com...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Miniaturized optical systems with planar form factors and low power consumption have many applicatio...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
Metamaterials have been around for almost two decades, providing great advances in optics and photon...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...