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Resonant coupling between surface vibrations and electronic states in silicon nanocrystals at the strong confinement regime

机译:强约束条件下硅纳米晶体表面振动与电子态的共振耦合

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摘要

A striking correlation between infrared photoinduced absorption spectra and the photoluminescence from silicon nanocrystals indicates that quantized electronic sublevels of the nanocrystals are resonantly coupled to surface vibrational modes via a polarization field produced by coherent longitudinal polar vibrations. Our experimental results and model support the assumption that the mechanism responsible for the efficient photoluminescence from silicon nanocrystals should be assigned to inhibition of nonradiative channels rather than enhancement of radiative channels.
机译:红外光致吸收光谱与硅纳米晶体的光致发光之间的显着相关性表明,纳米晶体的量化电子子能级通过相干纵向极化振动产生的极化场共振耦合到表面振动模式。我们的实验结果和模型支持这样一个假设,即负责硅纳米晶体有效光致发光的机理应该被分配为抑制非辐射通道,而不是增强辐射通道。

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