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Hyperbolic metamaterials based on quantum-dot plasmon-resonator nanocomposites

机译:基于量子点等离子体激元谐振器纳米复合材料的双曲超材料

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摘要

We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolayers placed between metal nanoparticle monolayers can function as multilayer hyperbolic metamaterials. Depending on the thickness of the spacer between the quantum dot and nanoparticle layers, the effective permittivity tensor of the nanocomposite is shown to become indefinite, resulting in increased photonic density of states and strong enhancement of quantum dot luminescence. This explains the results of recent experiments [T. Ozel et al., ACS Nano 5, 1328 (2011)] and confirms that hyperbolic metamaterials are capable of increasing the radiative decay rate of emission centers inside them. The proposed theoretical framework can also be used to design quantum-dot/nanoplasmonic composites with optimized luminescence enhancement. © 2014 Optical Society of America.
机译:我们从理论上证明,由置于金属纳米颗粒单层之间的胶体半导体量子点单层制成的纳米复合材料可以充当多层双曲线超材料。取决于量子点和纳米颗粒层之间的间隔物的厚度,纳米复合材料的有效介电常数张量显示为不确定的,从而导致状态的光子密度增加和量子点发光的强烈增强。这解释了最近的实验结果[T. Ozel等人,ACS Nano 5,1328(2011)],并证实了双曲线超材料能够提高其内部发射中心的辐射衰减率。提出的理论框架还可以用于设计具有优化发光增强的量子点/纳米等离子体复合材料。 ©2014美国眼镜学会。

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