Full and Partial Cloaking in Electromagnetic Scattering
arXiv:1509.01336 · doi:10.1007/s00205-016-1035-6
Abstract
In this paper, we consider two regularized transformation-optics cloaking schemes for electromagnetic (EM) waves. Both schemes are based on the blowup construction with the generating sets being, respectively, a generic curve and a planar subset. We derive sharp asymptotic estimates in assessing the cloaking performances of the two constructions in terms of the regularization parameters and the geometries of the cloaking devices. The first construction yields an approximate full-cloak, whereas the second construction yields an approximate partial-cloak. Moreover, by incorporating properly chosen conducting layers, both cloaking constructions are capable of nearly cloaking arbitrary EM contents. This work complements the existing results in [5--7] on approximate EM cloaks with the generating set being a singular point, and it also extends [9,25] on regularized full and partial cloaks for acoustic waves governed by the Helmholtz system to the more challenging EM case governed by the full Maxwell system.
34 pages, 2 figures
References in corpus (7)
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- Surface Plasmon Resonance of Nanoparticles and Applications in Imaging
- Effectiveness and improvement of cylindrical cloaking with the SHS lining
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Cited by in corpus (7)
- The Poisson embedding approach to the Calderón problem
- Approximate Isotropic Cloak for the Maxwell equations
- Approximate cloaking for electromagnetic waves via transformation optics: cloaking vs infinite energy
- Mathematical analysis of plasmon resonances for curved nanorods
- Sharp estimate of electric field from a conductive rod and application
- Transformation Optics for the Modelling of Waves in a Universe with Nontrivial Topology
- Nearly cloaking for the elasticity system with residual stress