We propose a three-dimensional directional cloak for arbitrarily polarized incoming electromagnetic waves, motivated by the fact that there will be negligible scattering when the direction of impinging wave coincides with the axial direction of a very thin and elongated perfectly electric conducting (PEC) scatterer. The performance of the cloak under different polarizations of incoming waves are numerically investigated. The case in which the direction of incoming wave is perturbed off the ideal direction is also quantitatively studied. Numerical simulations show that the directional cloaking device is able to tolerate a large range of tilted angles of incoming waves
In this paper, we present the design of an electromagnetic cloaking device working for both transver...
International audienceWe analyze cloaking of transverse electric (TE) fields through homogenization ...
In this contribution, we present our latest results concerning the design of microwave mantle cloaki...
We propose a three-dimensional directional cloak for arbitrarily polarized incoming electromagnetic ...
Abstract—We propose a three-dimensional directional cloak for arbitrarily polarized incoming electro...
Abstract—This article is devoted to the construction and investi-gation of a class of polarization-i...
Achieving full-polarization (σ) invisibility on an arbitrary three-dimensional (3D) platform is a lo...
Beam steering due to anomalous dispersion at higher photonic bands in dielectric photonic crystal is...
Transformation optics provides great versatility for precisely manipulating electromagnetic waves. I...
We propose a generalization of the two-dimensional eikonal-limit cloak derived from a conformal tran...
(c) 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for...
20th International Conference on Transparent Optical Networks, ICTON (2018: Bucharest; Romania)This ...
"In this Chapter, we review the theoretical analysis and the design principles of electromagnetic cl...
In this Letter, the design of a directional optical cloaking by a genetic algorithm is proposed and ...
International audienceThis paper deals with the numerical design of a directional invisibility cloak...
In this paper, we present the design of an electromagnetic cloaking device working for both transver...
International audienceWe analyze cloaking of transverse electric (TE) fields through homogenization ...
In this contribution, we present our latest results concerning the design of microwave mantle cloaki...
We propose a three-dimensional directional cloak for arbitrarily polarized incoming electromagnetic ...
Abstract—We propose a three-dimensional directional cloak for arbitrarily polarized incoming electro...
Abstract—This article is devoted to the construction and investi-gation of a class of polarization-i...
Achieving full-polarization (σ) invisibility on an arbitrary three-dimensional (3D) platform is a lo...
Beam steering due to anomalous dispersion at higher photonic bands in dielectric photonic crystal is...
Transformation optics provides great versatility for precisely manipulating electromagnetic waves. I...
We propose a generalization of the two-dimensional eikonal-limit cloak derived from a conformal tran...
(c) 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for...
20th International Conference on Transparent Optical Networks, ICTON (2018: Bucharest; Romania)This ...
"In this Chapter, we review the theoretical analysis and the design principles of electromagnetic cl...
In this Letter, the design of a directional optical cloaking by a genetic algorithm is proposed and ...
International audienceThis paper deals with the numerical design of a directional invisibility cloak...
In this paper, we present the design of an electromagnetic cloaking device working for both transver...
International audienceWe analyze cloaking of transverse electric (TE) fields through homogenization ...
In this contribution, we present our latest results concerning the design of microwave mantle cloaki...