Broadband negative refractive index in the visible spectrum

M. Keshavarz, S. Khosravi, A. Rostami, G. Rostami, M. Dolatyari
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引用次数: 2

Abstract

In this paper, a composite medium based metamaterial with random distribution of nanoparticles in vacuum host to achieve negative effective refractive index in the visible wavelength range is suggested for invisibility purposes. Our calculations show that structures including single metal (dielectric) spheres and core-shell structures with metallic core and dielectric shell, which consists two-layer particles with uniform sizes cannot support negative effective refractive index. For this purpose the structures consist of two-layer nanospheres with different sizes and fill fraction has been proposed. Since, band width of negative refractive index is narrow, the three layer nanospheres has been studied and investigated. We show that in this case with increasing the refractive index of middle and outer layers, negative value of effective refractive index can be increased. Also, we show that using different sizes of nanomaterials in host medium, band width is increased. Finally, superposition of three layer spherical nanoparticles with different outer radius and applied single doped semiconductor spheres, has been proposed. We show that Band width with negative permittivity and permeability can be optimized.
可见光谱中的宽带负折射率
本文提出了一种在真空介质中随机分布纳米粒子的复合介质基超材料,在可见波长范围内实现负有效折射率。我们的计算表明,单金属(介电)球结构和由大小均匀的两层粒子组成的金属核和介电壳核-壳结构不能支持负有效折射率。为此,提出了由不同尺寸和填充分数的两层纳米球组成的结构。由于负折射率的带宽较窄,对三层纳米球进行了研究。结果表明,在这种情况下,随着中、外层折射率的增大,有效折射率的负值可以增大。此外,我们还表明,在宿主介质中使用不同尺寸的纳米材料,可以增加带宽。最后,提出了不同外半径的三层球形纳米颗粒与单掺杂半导体球的叠加。结果表明,负介电常数和负磁导率的带宽是可以优化的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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