The electromagnetic implementation of cloaking, the hiding of objects from sight by diverting and reassembling illuminating electromagnetic fields has now been with us ten years, while the notion of hiding events is now five. Both schemes as initially presented neglected the inevitable dispersion that arises when a designed medium replaces vacuum under transformation. Here we define a transformation design protocol that incorporates both spacetime transformations and dispersive material responses in a natural and rigorous way. We show how this methodology is applied to an event cloak designed to appear as a homogeneous and isotropic but dispersive medium. The consequences for spacetime transformation design in dispersive materials are discu...
We investigate the application of a metamaterial that is formed by the sparse distribution of spiral...
Transformation optics (TO) is a powerful tool for the design of electromagnetic and optical devices ...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...
The electromagnetic implementation of cloaking, the hiding of objects from sight by diverting and re...
The electromagnetic implementation of cloaking, the hiding of objects from sight by di- verting and ...
The use of spacetime cloaking to hide events is an intriguing trick, but the unavoidable presence of...
We introduce a new type of electromagnetic cloak, the spacetime cloak (STC), which conceals events ...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
Transformation optics asks, using Maxwell\u27s equations, what kind of electromagnetic medium recrea...
<p>Complex artificial materials (metamaterials) strongly interact with light and can be used to fabr...
This computational work draws some analogies between control of light in diffusive media and control...
International audienceWe first review classical results on cloaking and mirage effects for electroma...
An approach to broadband cloaking of light waves is analysed for a simplified case of a scaling tran...
Transformation Optics asks Maxwell's equations what kind of electromagnetic medium recreate some smo...
Complex artificial materials (metamaterials) strongly interact with light and can be used to fabrica...
We investigate the application of a metamaterial that is formed by the sparse distribution of spiral...
Transformation optics (TO) is a powerful tool for the design of electromagnetic and optical devices ...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...
The electromagnetic implementation of cloaking, the hiding of objects from sight by diverting and re...
The electromagnetic implementation of cloaking, the hiding of objects from sight by di- verting and ...
The use of spacetime cloaking to hide events is an intriguing trick, but the unavoidable presence of...
We introduce a new type of electromagnetic cloak, the spacetime cloak (STC), which conceals events ...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
Transformation optics asks, using Maxwell\u27s equations, what kind of electromagnetic medium recrea...
<p>Complex artificial materials (metamaterials) strongly interact with light and can be used to fabr...
This computational work draws some analogies between control of light in diffusive media and control...
International audienceWe first review classical results on cloaking and mirage effects for electroma...
An approach to broadband cloaking of light waves is analysed for a simplified case of a scaling tran...
Transformation Optics asks Maxwell's equations what kind of electromagnetic medium recreate some smo...
Complex artificial materials (metamaterials) strongly interact with light and can be used to fabrica...
We investigate the application of a metamaterial that is formed by the sparse distribution of spiral...
Transformation optics (TO) is a powerful tool for the design of electromagnetic and optical devices ...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...