Transformation optics provides great versatility for precisely manipulating electromagnetic waves. It has been extended to other fields including acoustics, thermotics, and electrics. Taking advantage of the transformation electrics method, we demonstrate that the square-shaped cloak can guide electric current around the cloaked region smoothly without perturbing the exterior electric current. And the cylindrical rotator can rotate the electric current. Inside the enclosed domain of the rotator, the electric current from the outside will appear as if it is coming from a different angle. Finally, the related experimental realizations and potential applications are also discussed
Transformation optics constructions have allowed the design of electromagnetic, acoustic and quantum...
Ever since the inception of Transformation Optics (TO), new and exciting ideas have been proposed in...
Transformation optics, a recently booming area, provides people a new approach to design optical dev...
The thesis studies the practical realization of manipulation of electromagnetic energy based on the ...
Abstract: Recent developments in cloaking, the ability to selectively bend electromagnetic waves so ...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...
Underpinned by the advent of metamaterials, transformation optics offers great versatility for contr...
The principle of transformation optics has been applied to various wave phenomena (e.g., optics, ele...
We describe recent theoretical and experimental progress on mak-ing objects invisible to detection b...
Invisibility cloak is a device which can make objects invisible to outer detection. The invisibility...
Recent developments in cloaking, the ability to selectively bend electromagnetic waves so as to rend...
Research on metamaterials has been growing ever since the first experimental realization of double n...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
<p>Complex artificial materials (metamaterials) strongly interact with light and can be used to fabr...
'Any sufficiently advanced technology is indistinguishable from magic', as the late Arthur C Clarke ...
Transformation optics constructions have allowed the design of electromagnetic, acoustic and quantum...
Ever since the inception of Transformation Optics (TO), new and exciting ideas have been proposed in...
Transformation optics, a recently booming area, provides people a new approach to design optical dev...
The thesis studies the practical realization of manipulation of electromagnetic energy based on the ...
Abstract: Recent developments in cloaking, the ability to selectively bend electromagnetic waves so ...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...
Underpinned by the advent of metamaterials, transformation optics offers great versatility for contr...
The principle of transformation optics has been applied to various wave phenomena (e.g., optics, ele...
We describe recent theoretical and experimental progress on mak-ing objects invisible to detection b...
Invisibility cloak is a device which can make objects invisible to outer detection. The invisibility...
Recent developments in cloaking, the ability to selectively bend electromagnetic waves so as to rend...
Research on metamaterials has been growing ever since the first experimental realization of double n...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
<p>Complex artificial materials (metamaterials) strongly interact with light and can be used to fabr...
'Any sufficiently advanced technology is indistinguishable from magic', as the late Arthur C Clarke ...
Transformation optics constructions have allowed the design of electromagnetic, acoustic and quantum...
Ever since the inception of Transformation Optics (TO), new and exciting ideas have been proposed in...
Transformation optics, a recently booming area, provides people a new approach to design optical dev...