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Exciton Nonlinearities and Optical Gain in Colloidal CdSe/CdS Dot/rod Nanocrystals

机译:胶体CDSE / CDS点/杆纳米晶体中的激子非线性和光学增益

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We characterized the optical nonlinearities of CdSe nanocrystals surrounded by rod-like CdS shells with ultrafast measurements of time-resolved photoluminescence. We measured the exciton-exciton interaction to be, depending on structure details, attractive or repulsive, by as much as 31 meV, due to the unique band alignment in the CdSe/CdS. This feature makes CdSe/CdS dot/rods promising gain media for solution-processable lasers, as it appears combined with 80% photoluminescence quantum yield, narrow size and shape distributions and the antenna effect of the CdS rod shell enhancing optical absorption by more than a factor 50 with respect to bare dots.
机译:我们以具有超快测量的时间分辨光致发光的超快测量,我们表征了由棒状Cds壳包围的Cdse纳米晶体的光学非线性。我们通过CDSE / Cds中的独特频段对准来测量兴奋剂 - 激子相互作用,取决于结构细节,吸引力或排斥,多达31 mev。该特征使得CDSE / CDS点/棒具有溶液可加工激光器的有希望的增益介质,因为它看起来与80%的光致发光量子产率,窄尺寸和形状分布以及CDS杆壳的天线效应增强了多于a的光学吸收关于裸点的因子50。

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