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Temporal correlation of blinking events in CdSe/ZnS and Si/SiO_2 nanocrystals

机译:CdSe / ZnS和Si / SiO_2纳米晶体中闪烁事件的时间相关性

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Well passivated single Si/SiO_2 nanoparticles obey mono-exponential blinking statistics, whereas CdSe/ ZnS quantum dots follow an apparent (truncated) power-law. Log-normal distributions are found to describe the interval length histograms at least as well as power-laws, while at the same time being more physically feasible and significantly easing the determination of the exponential cutoff in the ON-time distribution. The correlation of an ON- (OFF-)interval with its temporally displaced ON (OFF) neighbors, as well as that of intermixed intervals (ON with OFF and OFF with ON neighbors) has been studied. As expected from purely random processes, the correlation coefficients for events in silicon nanocrystals equal zero, whereas positive correlations between the pure and negative correlations between the mixed states in CdSe quantum dots hint at a switching process between two distinct blinking regimes that are slower than the blinking itself.
机译:钝化度高的单个Si / SiO_2纳米颗粒遵循单指数闪烁统计,而CdSe / ZnS量子点遵循明显的(截断的)幂律。发现对数正态分布至少描述了间隔长度直方图以及幂律,同时在物理上更可行,并且显着简化了导通时间分布中指数截止的确定。已经研究了ON-(OFF-)间隔与其在时间上移位的ON(OFF)邻居的相关性,以及混合间隔的相关性(ON与OFF以及OFF与ON邻居)的相关性。正如纯随机过程所预期的那样,硅纳米晶体中事件的相关系数等于零,而CdSe量子点中混合态之间纯正相关和负相关之间的正相关暗示着两个不同的闪烁机制之间的切换过程,该过程比晶体慢。眨眼。

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