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Surface recombination and charged exciton in nanocrystal quantum dots on photonic crystals under two-photon excitation

机译:双光子激发下光子晶体上纳米晶体量子点的表面复合和带电激子

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In this study, the two-photon excited fluorescence spectra from cadmium selenide quantum dots (QDs) on a silicon nitride photonic crystal (PhC) membrane under femtosecond laser irradiation were investigated. These spectra can be fit to a tri-Gaussian function in which one component is negative in amplitude, and in which the Gaussian components with positive amplitude are assigned to exciton emission and charged-exciton emission and that with negative amplitude is assigned to absorption from surface recombination. The photonic crystal enhance the charged-exciton emission and exciton emission and, at the same time, also the absorption from surface recombination. Both the charged-exciton emission and the surface recombination are related to Auger recombination; therefore, the photonic crystal controls both radiative recombination and non-radiative recombination. The asymmetries of the two-photon excited fluorescence spectra are due to not only the location of the resonant guide mode of the PhC slab but also the enhancement of the absorption from surface recombination by PhC.
机译:在这项研究中,研究了飞秒激光照射下氮化硅光子晶体(PhC)膜上硒化镉量子点(QD)的双光子激发荧光光谱。这些光谱可以拟合三高斯函数,其中一个分量的振幅为负,并且其中将具有正振幅的高斯分量分配给激子发射和带电激子发射,将具有负振幅的高斯分量分配给从表面的吸收重组。光子晶体增强了电荷激子发射和激子发射,同时还增强了表面复合的吸收。电荷激子发射和表面复合都与俄歇复合有关。因此,光子晶体既控制辐射复合又控制非辐射复合。双光子激发的荧光光谱的不对称性不仅是由于PhC平板的共振引导模式的位置,而且还因为PhC增强了表面复合的吸收。

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