Creating materials with a desired refraction coefficient: numerical experiments
arXiv:1002.3533
Abstract
A recipe for creating materials with a desired refraction coefficient is implemented numerically. The following assumptions are used: \bee ζ_m=h(x_m)/a^κ,\quad d=O(a^{(2-κ)/3}),\quad M=O(1/a^{2-κ}),\quad κ\in(0,1), \eee where and are the boundary impedance and center of the -th ball, respectively, , Im, is the number of small balls embedded in the cube , is the radius of the small balls and is the distance between the neighboring balls. An error estimate is given for the approximate solution of the many-body scattering problem in the case of small scatterers. This result is used for the estimate of the minimal number of small particles to be embedded in a given domain in order to get a material whose refraction coefficient approximates the desired one with the relative error not exceeding a desired small quantity.
24 pages