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Real-Time Detection of Single Auger Recombination Events in a Self-Assembled Quantum Dot

机译:自组装量子点中的单螺旋钻重组事件的实时检测

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摘要

Auger recombination is a nonradiative process, where the recombination energy of an electron-hole pair is transferred to a third charge carrier. It is a common effect in colloidal quantum dots that quenches the radiative emission with an Auger recombination time below nanoseconds. In self-assembled QDs, the Auger recombination has been observed with a much longer recombination time on the order of microseconds. Here, we use two-color laser excitation on the exciton and trion transition in resonance fluorescence on a single self-assembled quantum dot to monitor in real-time single quantum events of the Auger process. Full counting statistics on the random telegraph signal give access to the cumulants and demonstrate the tunability of the Fano factor from a Poissonian to a sub-Poissonian distribution by Auger-mediated electron emission from the dot. Therefore, the Auger process can be used to tune optically the charge carrier occupation of the dot by the incident laser intensity, independently from the electron tunneling from the reservoir by the gate voltage. Our findings are not only highly relevant for the understanding of the Auger process but also demonstrate the perspective of the Auger effect for controlling precisely the charge state in a quantum system by optical means.
机译:螺旋钻重组是一个非地改性,其中电子 - 孔对的重组能量被转移到第三电荷载体。它是胶体量子点的常见效果,使螺旋钻重组时间淬火辐射发射以低于纳秒。在自组装QDS中,已经观察到螺旋钻重组,以微秒的顺序具有更长的重组时间。在这里,我们在同谐荧光上使用双色激光激发在单个自组装量子点上的共振荧光中,以便在螺旋钻过程的实时单量子事件中监测。随机电报信号的完全计数统计数据可以访问累积剂,并通过螺旋介导的电子发射从点介导的电子发射来证明Fano因子的可调性来自Poissonian到子泊松分布。因此,螺旋钻过程可用于通过入射激光强度的光学上的电荷载波占用点,从储存器通过栅极电压独立于来自储存器的电子隧道。我们的发现不仅对了对螺旋钻过程的理解非常相关,而且还证明了通过光学手段精确地控制量子系统中的充电状态的螺旋钻效果的视角。

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