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Dielectric Materials Containing Active Dielectric-Metal Composite Nanoparticles as Double Negative Materials in the Visible

机译:含有活性介电 - 金属复合纳米颗粒的介电材料,如可见的双负材料

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摘要

In the visible spectral range, Mie resonance-based double negativity has still not been observed in all-dielectric metamaterials due to the lack of dielectrics with sufficiently high refractive indices. In this work, the dielectric materials containing nanospheres of gain-metal nanocomposites are proposed as double negative materials operating in the visible. They are embedded with two types of composite nanospheres: one contributes to the negative permeability via magnetic Mie resonance facilitated by gain-assisted high indices of composite nanospheres and the other one to the negative permittivity via plasmonic dipolar resonance in the same spectral range. The figure-of-merit of these materials reaches up to infinity or even can be negative, implying the gain, depending on the structural and material parameters. The proposed materials can find broad applications as loss-free negative index materials in the visible and near-infrared.
机译:在可见光谱范围内,由于具有足够高的折射率的电介质,在全介电超材料中仍未观察到基于MIE共振的双消极性。 在这项工作中,提出了含有增益金属纳米复合材料的纳米球的介电材料作为在可见的双负材料。 它们嵌入两种类型的复合纳米球:一种通过通过在相同光谱范围内通过等离子体偶极共振通过增益辅助的高索引,通过增强的高偏振辅助,有助于通过磁性MIE共振促进的负渗透性。 根据结构和材料参数,这些材料的数字达到无穷大或甚至可能是负的,这意味着增益。 所提出的材料可以在可见和近红外线中找到广泛的应用是无损耗的负指数材料。

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