On the quest towards full control over wave propagation, the development of compact devices that allow asymmetric response is a challenge. In this Letter, we introduce a new paradigm for the engineering of asymmetry in planar structures, revealing and exploiting unilateral excitation of evanescent waves. We test the idea with the design and experimental characterization of a metasurface for angular-asymmetric absorption. The results show that the contrast ratio of absorption (the asymmetry level) can be arbitrarily engineered from zero to infinity for waves coming from two oppositely tilted angles. We demonstrate that the revealed asymmetry effects cannot be realized using conventional diffraction gratings, reflectarrays, and phase-gradient...
We report on the design and the numerical and experimental characterization of an all-dielectric ref...
Reflection is one of the most fundamental properties of light propagation. The ability to engineer t...
In this paper, we propose a new metasurface that is able to reflect a known incoming electromagnetic...
On the quest towards full control over wave propagation, the development of compact devices that all...
In this talk we show how to break the angular symmetry of electromagnetic response of thin absorbers...
Metasurface thin films created from arrays of structured optical elements have been shown to perform...
Diffraction is a fundamental phenomenon that reveals the wave nature of light. When a plane wave is ...
Metasurface thin films created from arrays of structured optical elements have been shown to perform...
The spatial filtering of optical signals has been demonstrated previously with metasurface thin-film...
The selective excitation of localized surface wave modes remains a challenge in the design of both l...
An asymmetric transmission device composed of all dielectric phase gradient metasurfaces on the diel...
Funding Information: This work was supported in part by the Academy of Finland under Grant No. 33026...
One of the main advantages of reciprocal bianisotropic metasurfaces is their capability to produce a...
A chiral metasurface, which obtains chirality through a subwavelength artificial structure, is essen...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
We report on the design and the numerical and experimental characterization of an all-dielectric ref...
Reflection is one of the most fundamental properties of light propagation. The ability to engineer t...
In this paper, we propose a new metasurface that is able to reflect a known incoming electromagnetic...
On the quest towards full control over wave propagation, the development of compact devices that all...
In this talk we show how to break the angular symmetry of electromagnetic response of thin absorbers...
Metasurface thin films created from arrays of structured optical elements have been shown to perform...
Diffraction is a fundamental phenomenon that reveals the wave nature of light. When a plane wave is ...
Metasurface thin films created from arrays of structured optical elements have been shown to perform...
The spatial filtering of optical signals has been demonstrated previously with metasurface thin-film...
The selective excitation of localized surface wave modes remains a challenge in the design of both l...
An asymmetric transmission device composed of all dielectric phase gradient metasurfaces on the diel...
Funding Information: This work was supported in part by the Academy of Finland under Grant No. 33026...
One of the main advantages of reciprocal bianisotropic metasurfaces is their capability to produce a...
A chiral metasurface, which obtains chirality through a subwavelength artificial structure, is essen...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
We report on the design and the numerical and experimental characterization of an all-dielectric ref...
Reflection is one of the most fundamental properties of light propagation. The ability to engineer t...
In this paper, we propose a new metasurface that is able to reflect a known incoming electromagnetic...