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Demonstration of Modulatable Nanophotonics based on modulatable optical near-field interactions between dispersed quantum dots

机译:基于分散量子点之间可调制的光学近场相互作用的可调制纳米光子论证

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Optical near-field interactions exhibit high-efficiency energy transfer between closely positioned nanometric materials, and the subsequent optical response induced by the transfer can be controlled by modulating the spatial distribution. We experimentally demonstrated the basic concept of such modulatable optical near-field interactions, termed Modulatable Nanophotonics, with quantum dots dispersed on a flexible substrate.
机译:光学近场相互作用在紧密定位的纳米材料之间表现出高效的能量转移,并且通过调制空间分布可以控制由转移引起的后续光学响应。我们实验证明了这种可调制的光学近场相互作用的基本概念,称为可调制纳米光子学,量子点分散在柔性基板上。

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