Reshetnyak V Yu, Pinkevych I P, Sluckin T J, Evans D R
Opt Express. 2016 Jan 25;24(2):A21-32. doi: 10.1364/OE.24.000A21.
We model electromagnetic cloaking of a spherical or cylindrical nanoparticle enclosed by an optically anisotropic and optically inhomogeneous symmetric shell, by examining its electric response in a quasi-static uniform electric field. When the components of the shell permittivity are radially anisotropic and power-law dependent (ε~r(m)) whereris distance to the shell center, and m a positive or negative exponent which can be varied), the problem is analytically tractable. Formulas are calculated for the degree of cloaking in the general case, allowing the determination of a dielectric condition for the shells to be used as an invisibility cloak. Ideal cloaking is known to require that homogeneous shells exhibit an infinite ratio of tangential and radial components of the shell permittivity, but for radially inhomogeneous shells ideal cloaking can occur even for finite values of this ratio.
我们通过研究球形或圆柱形纳米粒子在准静态均匀电场中的电响应,对由光学各向异性且光学非均匀对称壳层包裹的纳米粒子的电磁隐身进行建模。当壳层介电常数的分量呈径向各向异性且与幂律相关(ε~r(m),其中r是到壳层中心的距离,m为可变化的正或负指数)时,该问题可进行解析处理。计算了一般情况下的隐身程度公式,从而能够确定用作隐身斗篷的壳层的介电条件。已知理想隐身要求均匀壳层的壳层介电常数切向和径向分量之比为无穷大,但对于径向非均匀壳层,即使该比值为有限值也可能出现理想隐身情况。