We propose a practical realization of electromagnetic spherical cloaking by layered structure of homogeneous isotropic materials. By mimicking the classic anisotropic cloak by many alternating thin layers of isotropic dielectrics, the permittivity and permeability in each isotropic layer can be properly determined by effective medium theory in order to achieve invisibility. The model greatly facilitates modeling by Mie theory and realization by multilayer coating of dielectrics. Eigenmode analysis is also presented to provide insights of the discretization in multilayers.National Natural Science Foundation of ChinaNational Basic Research Program (973) of Chin
AbstractCloaking refers to hiding a body from detection by surrounding it with a coating consisting ...
The perfect cylindrical cloak requires three spatial variant material parameters, which is very diff...
A multi-layer transmission cloak formed from ordinary dielectrics for hiding cylindrical objects wit...
The classic anisotropic spherical cloak can be mimicked by many alternating thin layers of isotropic...
10.1103/PhysRevE.79.047602Physical Review E - Statistical, Nonlinear, and Soft Matter Physics794-PLE...
We studied a Spherically Radially Anisotropic (SRA) multilayer sphere with an arbitrary number of la...
Cloaking refers to hiding a body from detection by surrounding it with a coating consisting of an un...
An approach for spherical cloaking using multilayer ordinary dielectric materials has been developed...
Cloaking techniques conceal objects by controlling the flow of electromagnetic waves to minimize sca...
We model electromagnetic cloaking of a spherical or cylindrical nanoparticle enclosed by an opticall...
The user has requested enhancement of the downloaded file.International audienceMimicking the ideal ...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
Two novel classes of spherical invisibility cloaks based on nonlinear transformation have been studi...
The efficiency of two approaches to cloaking cylindrical objects by using dielectric materials, one ...
We propose a generalization of the two-dimensional eikonal-limit cloak derived from a conformal tran...
AbstractCloaking refers to hiding a body from detection by surrounding it with a coating consisting ...
The perfect cylindrical cloak requires three spatial variant material parameters, which is very diff...
A multi-layer transmission cloak formed from ordinary dielectrics for hiding cylindrical objects wit...
The classic anisotropic spherical cloak can be mimicked by many alternating thin layers of isotropic...
10.1103/PhysRevE.79.047602Physical Review E - Statistical, Nonlinear, and Soft Matter Physics794-PLE...
We studied a Spherically Radially Anisotropic (SRA) multilayer sphere with an arbitrary number of la...
Cloaking refers to hiding a body from detection by surrounding it with a coating consisting of an un...
An approach for spherical cloaking using multilayer ordinary dielectric materials has been developed...
Cloaking techniques conceal objects by controlling the flow of electromagnetic waves to minimize sca...
We model electromagnetic cloaking of a spherical or cylindrical nanoparticle enclosed by an opticall...
The user has requested enhancement of the downloaded file.International audienceMimicking the ideal ...
International audienceElectromagnetic cloaking, as challenging as it may be to the physicist and the...
Two novel classes of spherical invisibility cloaks based on nonlinear transformation have been studi...
The efficiency of two approaches to cloaking cylindrical objects by using dielectric materials, one ...
We propose a generalization of the two-dimensional eikonal-limit cloak derived from a conformal tran...
AbstractCloaking refers to hiding a body from detection by surrounding it with a coating consisting ...
The perfect cylindrical cloak requires three spatial variant material parameters, which is very diff...
A multi-layer transmission cloak formed from ordinary dielectrics for hiding cylindrical objects wit...