Peterson Jeffrey J, Nesbitt David J
JILA, National Institute of Standards and Technology and University of Colorado, Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309, USA.
Nano Lett. 2009 Jan;9(1):338-45. doi: 10.1021/nl803108p.
Single photon detection methods are used to acquire fluorescence trajectories from single CdSe/ZnS colloidal quantum dots (QDs) and analyze their blinking behavior. Although the "off-time" distributions follow ideal power law behavior at all wavelengths and intensities, significant deviations from power law behavior are observed for the "on-times". Specifically, with improved time resolution, trajectory durations, and photon statistics, we report a near-exponential falloff of on-time probability distributions at long times. Investigation of this falloff behavior as a function of laser wavelength and power demonstrate that these deviations originate from multiexciton dynamics, whose formation probabilities can be very low on a "per laser pulse" basis, but become nearly unity on the time scales of the longest on-times. The near quadratic, power-dependent results indicate the predominant role of biexcitons in the long time on-to-off blinking dynamics, which can be interpreted in terms of an Auger ionization event. In conjunction with Poisson modeling of the photon statistics, the data is consistent with QD ionization efficiencies of order approximately 10(-5) and highlight a novel role for biexcitons and Auger ionization in QD blinking.
单光子探测方法用于获取单个CdSe/ZnS胶体量子点(QD)的荧光轨迹,并分析其闪烁行为。尽管“关断时间”分布在所有波长和强度下均遵循理想的幂律行为,但对于“开启时间”,观察到与幂律行为存在显著偏差。具体而言,随着时间分辨率、轨迹持续时间和光子统计的改善,我们报告了长时间开启时间概率分布的近似指数衰减。对这种衰减行为作为激光波长和功率的函数进行研究表明,这些偏差源于多激子动力学,其形成概率在“每个激光脉冲”的基础上可能非常低,但在最长开启时间的时间尺度上几乎变为1。近似二次方的、与功率相关的结果表明双激子在长时间开启到关闭闪烁动力学中起主要作用,这可以用俄歇电离事件来解释。结合光子统计的泊松模型,数据与约为10^(-5)量级的量子点电离效率一致,并突出了双激子和俄歇电离在量子点闪烁中的新作用。