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Reducing inhomogeneity in the dynamic properties of quantum dots via self-aligned plasmonic cavities

机译:通过自对准等离子体空腔减少量子点动态性质的不均匀性

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摘要

A plasmonic cavity is shown to greatly reduce the inhomogeneity of dynamic optical properties such as quantum efficiency and radiative lifetime of InGaN quantum dots. By using an open-top plasmonic cavity structure, which exhibits a large Purcell factor and antenna quantum efficiency, the resulting quantum efficiency distribution for the quantum dots narrows and is no longer limited by the quantum dot inhomogeneity. The standard deviation of the quantum efficiency can be reduced to 2% while maintaining the overall quantum efficiency at 70%, making InGaN quantum dots a viable candidate for high-speed quantum cryptography and random number generation applications.
机译:示出了等离子体腔,大大降低了动态光学性质的不均匀性,例如InGaN量子点的量子效率和辐射寿命。 通过使用具有大的PURCELL因子和天线量子效率的俯视等离子体腔结构,所产生的量子点的量子效率分布窄,不再受量子点不均匀性的限制。 量子效率的标准偏差可以减少到2%,同时保持全量子效率为70%,使IngaN量子点成为高速量子密码和随机数产生应用的可行候选者。

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