© 2016 IOP Publishing Ltd. We have developed an approach to building superluminal medium for transformation optics-based devices, including invisibility cloaks, from photonic crystals. Analysis of dispersion diagrams of 2D arrays composed from dielectric rods has shown that at frequencies corresponding to the second bands formed due to bandgap opening at increase of rod permittivity, the medium formed by arrays exhibits refractive indices providing for superluminal phase velocities of propagating waves. It is further demonstrated that rod arrays with various lattice constants could be used for realizing a range of superluminal index values prescribed by transformation optics for cylindrical cloaks at arbitrary chosen operating frequency. Th...
We investigate the application of a metamaterial that is formed by the sparse distribution of spiral...
Despite its remarkably fast development in the past few years, the technology of invisibility cloaki...
Despite its remarkably fast development in the past few years, the technology of invisibility cloaki...
Extending Transformation Optics in optical range is challenging because of losses in metamaterials. ...
Extending Transformation Optics in optical range is challenging because of losses in metamaterials. ...
The invisibility cloak is the device that prevents the system including the cloak and the concealed ...
The opportunities to use dielectric photonic crystals (PhCs) as the media of cylindrical invisibilit...
© 2016 IEEE. We demonstrate that self-collimation effects in the invisibility cloak medium formed fr...
Optical metamaterials—artificially structured materials with engineered electromagnetic responses at...
Dielectric Metamaterials and Metasurfaces in Transformation Optics and Photonics addresses the compl...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
We employ the known in photonic crystals phenomenon of self-collimation (SC) for modifying the perfo...
Metamaterials, which are artificially engineered composites, have been shown to exhibit electromagne...
Invisibility cloaks, a family of optical illusion devices that routeelectromagnetic (EM) waves aroun...
We investigate the application of a metamaterial that is formed by the sparse distribution of spiral...
Despite its remarkably fast development in the past few years, the technology of invisibility cloaki...
Despite its remarkably fast development in the past few years, the technology of invisibility cloaki...
Extending Transformation Optics in optical range is challenging because of losses in metamaterials. ...
Extending Transformation Optics in optical range is challenging because of losses in metamaterials. ...
The invisibility cloak is the device that prevents the system including the cloak and the concealed ...
The opportunities to use dielectric photonic crystals (PhCs) as the media of cylindrical invisibilit...
© 2016 IEEE. We demonstrate that self-collimation effects in the invisibility cloak medium formed fr...
Optical metamaterials—artificially structured materials with engineered electromagnetic responses at...
Dielectric Metamaterials and Metasurfaces in Transformation Optics and Photonics addresses the compl...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
We employ the known in photonic crystals phenomenon of self-collimation (SC) for modifying the perfo...
Metamaterials, which are artificially engineered composites, have been shown to exhibit electromagne...
Invisibility cloaks, a family of optical illusion devices that routeelectromagnetic (EM) waves aroun...
We investigate the application of a metamaterial that is formed by the sparse distribution of spiral...
Despite its remarkably fast development in the past few years, the technology of invisibility cloaki...
Despite its remarkably fast development in the past few years, the technology of invisibility cloaki...