English

Electromagnetic wave scattering by many small particles and creating materials with a desired permeability

Mathematical Physics 2011-01-18 v2 Materials Science math.MP

Abstract

Scattering of electromagnetic (EM) waves by many small particles (bodies) embedded in a homogeneous medium is studied. Physical properties of the particles are described by their boundary impedances. The limiting equation is obtained for the effective EM field in the limiting medium, in the limit a0a\to 0, where aa is the characteristic size of a particle and the number M(a)M(a) of the particles tends to infinity at a suitable rate. The proposed theory allows one to create a medium with an inhomogeneous permeability. The main new physical result is the explicit analytical formula for the permeability μ(x)\mu(x) of the limiting medium. While the initial medium has a constant permeability μ0\mu_0, the limiting medium, obtained as a result of embedding many small particles with prescribed boundary impedances, has a non-homogeneous permeability which is expressed analytically in terms of the density of the distribution of the small particles and their boundary impedances.

Keywords

Cite

@article{arxiv.1009.6143,
  title  = {Electromagnetic wave scattering by many small particles and creating materials with a desired permeability},
  author = {A. G. Ramm},
  journal= {arXiv preprint arXiv:1009.6143},
  year   = {2011}
}