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Propagation properties of silver nanowires embedded in a substrate with gain

机译:银纳米线嵌入底物中的银纳米线的传播特性

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The transmittance, reflectance and absorption of silver nanowires metamaterial embedded into a semiconductor matrix with optical gain are numerically investigated. Metamaterials may suffer from appreciable dissipative losses which are inherent for all plasmonic structures. The losses can significantly be reduced by introducing optical gain in the dielectric matrix by placing atomic or molecular impurities which are pumped by an external light source to create a population inversion. We numerically analyzed the optical properties when the semiconductor host material represents a gain medium. We calculate the transmittance, reflectance and absorption at normal incidence in the visible and near infrared ranges. We observed a peculiar behavior of their optical coefficients that can be explained by observing the field redistribution on the metamaterial.
机译:在数值上研究了嵌入到具有光学增益中的半导体矩阵中的银纳米线超玻璃材料的透射率,反射率和吸收。超材料可能患有所有等离子体结构所固有的可观耗散损失。通过放置由外部光源泵送的原子或分子杂质来产生​​介电基质中的光学增益,可以显着降低损耗。当半导体主体材料代表增益介质时,我们在数值分析了光学性质。我们在可见光和近红外线范围内计算正常入射时的透射率,反射率和吸收。我们观察到它们的光学系数的特殊行为可以通过观察超材料上的场再分布来解释。

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