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A novel method for wave focusing investigation in metamaterial half-space and slab lens structures

机译:一种新型半空空间和平板透镜结构的波形聚焦研究的新方法

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Approximate image currents for the Sommerfeld half-space problem with vertical electric and magnetic current sources above double negative half-space is found using the discrete image theory and Laplace transform. This method would found its applications in investigation of dipole radiation above metamaterial half-space and in describing the focusing mechanism of metamaterial lenses. In order to efficiently consider the effects of metamaterial half-space, discrete image dipoles are defined by proposing an exponential series for reflection coefficient. Unknown constants (the loci of images) in the argument of the exponential function are determined by equating the coefficients of the Taylor series for exact reflection coefficient with those of the proposed approximate series. Thus, the calculation of integral with oscillating integrand reduces to the solution of polynomial equation for the zeros of polynomials. As an application for the proposed approach, the field focusing in double negative is investigated. Thanks to the fast and accurate methods for finding the zeros of polynomials, it is shown that in addition to its good accuracy, this method decreases the computational time for field calculations in comparison with the exact methods. It is seen that for the negative refractive index beside -1, the complex images approach to infinity and have negligible effect on the scattering field of dipole. For the other negative indexes the complex image blurs the real image. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:使用离散的图像理论和拉普拉斯变换,找到垂直电流和磁电流源的垂直电流和磁电流源的近似图像电流。该方法将发现其在研究超石料半空间上方的偶极辐射的应用以及描述超材料透镜的聚焦机制。为了有效地考虑超材料半空间的影响,通过提出用于反射系数的指数序列来定义离散图像偶极子。通过将泰勒序列的系数与所提出的近似序列的那些相同,确定指数函数的参数中的未知常数(图像的基因座)由与所提出的近似序列的系数相同。因此,随着振荡积分的整数计算减少到多项式的零的多项式方程的解。作为所提出的方法的应用,研究了重点在双阴性中的领域。由于具有多项式的零的快速和准确的方法,因此表明,除了其良好的精度之外,与确切方法相比,该方法还会降低现场计算的计算时间。可以看出,对于-1旁边的负折射率,复杂的图像对无穷大的方法,对偶极子的散射场具有可忽略的影响。对于其他负指标,复杂的图像模糊真实的图像。版权所有(c)2015 John Wiley&Sons,Ltd。

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