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Optical properties of SOI waveguides functionalized with close-packed quantum dot films

机译:用紧密堆积的量子点薄膜功能化的sOI波导的光学特性

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摘要

It is shown that dipolar coupling between neighboring quantum dots enhances the absorption of light in close packed monolayers of colloidal quantum dots. Based on this concept, the experimentally determined losses in planarized waveguides coated by a quantum dot monolayer can be successfully simulated. These simulations rely on replacing the quantum dot layer by an effective medium with a dielectric function determined by dipolar coupling and use the dielectric constant of the quantum dot host medium as the only adjustable parameter. This leads to a generic approach for the simulation of optical materials including close packed quantum dot layers.
机译:结果表明,相邻量子点之间的偶极耦合增强了在紧密堆积的胶体量子点单层中光的吸收。基于此概念,可以成功地模拟由量子点单层涂层的平面波导中实验确定的损耗。这些模拟依赖于用有效介质替换量子点层,该有效介质具有通过偶极耦合确定的介电函数,并将量子点宿主介质的介电常数用作唯一的可调整参数。这导致了一种用于模拟包括紧密堆积的量子点层的光学材料的通用方法。

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