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首页> 外文期刊>Advances in Optical Technologies >Demonstration of Controlling the Spatiotemporal Dynamics of Optical Near-Field Excitation Transfer in Y-Junction Structure Consisting of Randomly Distributed Quantum Dots
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Demonstration of Controlling the Spatiotemporal Dynamics of Optical Near-Field Excitation Transfer in Y-Junction Structure Consisting of Randomly Distributed Quantum Dots

机译:控制随机分布的量子点组成的Y型结结构中光学近场激发传输的时空动力学的演示

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Solution searching devices that operate on the basis of controlling the spatiotemporal dynamics of excitation transfer via dressed photon interactions between quantum dots have been proposed. Long-range excitation transfer based on dressed photon interactions between randomly distributed quantum dots is considered to be effective in realizing such devices. Here, we successfully controlled the spatiotemporal dynamics of excitation transfer using a Y-junction structure consisting of randomly dispersed CdSe/ZnS core-shell quantum dots. This Y-junction structure has two “output ends” and one “tap end.” By exciting one output end with control light, we observed increased excitation transfer to the other output end via a state-filling effect. Conversely, we observed reduced excitation transfer to the output ends by irradiating the tap end with control light, due to excitation of defect levels in the tap end. These results show the possibility of controlling the optical excitation transfer dynamics between multiple quantum dots.
机译:已经提出了基于通过量子点之间的修饰的光子相互作用来控制激发传递的时空动力学的溶液搜索装置。基于随机分布的量子点之间的修饰光子相互作用的远程激发转移被认为在实现这种装置方面是有效的。在这里,我们成功地使用由随机分散的CdSe / ZnS核-壳量子点组成的Y结结构控制了激发转移的时空动力学。这种Y结结构具有两个“输出端”和一个“抽头端”。通过用控制光激励一个输出端,我们观察到了通过状态填充效应将更多的激励传递到另一输出端。相反地​​,由于激发端部中的缺陷水平,我们观察到通过用控制光照射端部,减少了向输出端的激励传递。这些结果表明控制多个量子点之间的光激发转移动力学的可能性。

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