Artificial materials have been widely studied and used in photonics and microwaves in the last few decades. Recent research has proven that the introduction of specific higher symmetries in each cell of a periodic medium is an effective approach to obtain unprecedented exotic behaviors and to overcome the current limitations of these devices. For example, simple symmetries of a purely spatial type (glide or twist transformations) can have a huge impact on the properties of the resulting materials, thus defining wideband behaviors for flat lenses or large stop bands for novel EBG materials. This Special Issue opens with a novel discussion on the effect of time-reversal symmetries in antenna theory and presents new structures exploiting symme...
In this article, we review the topic of Huygens' metasurfaces with an emphasis on existing and emerg...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Recent developments in engineered electromagnetic materials, also known as metamaterials paved the w...
The presence of glide symmetries in periodic structures can introduce beneficial modifications in th...
Higher symmetries frequently amaze human beings because of the illusions and incredible landscapes s...
International audienceHIGHER SYMMETRIES frequently amaze human beings because of the illusions and i...
The new generation of wireless communication networks intends to support data rate of Gbit/s. One so...
In this article, a number of guiding structures are proposed which take advantage of higher symmetri...
In this thesis, periodic structures with higher symmetries symmetries are discussed. The main focus ...
In this article, we provide an overview of the current state of the research in the area of twist sy...
Here we propose the use of twist and glide symmetries to increase the equivalent refractive index in...
Metamaterials are artificially structured materials that are engineered to interact with waves in ex...
In this thesis, periodic structures with higher symmetries are studied. Their wave propagation chara...
<p>Complex artificial materials (metamaterials) strongly interact with light and can be used to fabr...
Complex artificial materials (metamaterials) strongly interact with light and can be used to fabrica...
In this article, we review the topic of Huygens' metasurfaces with an emphasis on existing and emerg...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Recent developments in engineered electromagnetic materials, also known as metamaterials paved the w...
The presence of glide symmetries in periodic structures can introduce beneficial modifications in th...
Higher symmetries frequently amaze human beings because of the illusions and incredible landscapes s...
International audienceHIGHER SYMMETRIES frequently amaze human beings because of the illusions and i...
The new generation of wireless communication networks intends to support data rate of Gbit/s. One so...
In this article, a number of guiding structures are proposed which take advantage of higher symmetri...
In this thesis, periodic structures with higher symmetries symmetries are discussed. The main focus ...
In this article, we provide an overview of the current state of the research in the area of twist sy...
Here we propose the use of twist and glide symmetries to increase the equivalent refractive index in...
Metamaterials are artificially structured materials that are engineered to interact with waves in ex...
In this thesis, periodic structures with higher symmetries are studied. Their wave propagation chara...
<p>Complex artificial materials (metamaterials) strongly interact with light and can be used to fabr...
Complex artificial materials (metamaterials) strongly interact with light and can be used to fabrica...
In this article, we review the topic of Huygens' metasurfaces with an emphasis on existing and emerg...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Recent developments in engineered electromagnetic materials, also known as metamaterials paved the w...