论文标题

分子光源中电荷注射动力学的吉格兹帧速率成像

Gigahertz frame rate imaging of charge-injection dynamics in a molecular light source

论文作者

Rosławska, Anna, Merino, Pablo, Leon, Christopher C., Grewal, Abhishek, Etzkorn, Markus, Kuhnke, Klaus, Kern, Klaus

论文摘要

可以通过扫描隧道显微镜诱导的发光(STML)来解决单分子尺度上的光源。这种来源可以由定义的短电荷脉冲驱动,而通过亚纳秒分辨率检测到发光。我们介绍了一种同时对分子发射极图像的方法,该方法基于单个缺陷,其本地环境以及其发光动力学,每秒十亿帧的分辨率。可以将观察到的动力学分配给低纳秒制度中发生的单电子捕获。尽管发射极在表面上的位置保持固定,但尖端的扫描会修饰能量景观,以注入缺陷。测量原理可扩展到基本过程,而不是电荷转移等基本过程。

Light sources on the scale of single molecules can be addressed and characterized on their proper sub-nanometer scale by scanning tunneling microscopy induced luminescence (STML). Such a source can be driven by defined short charge pulses while the luminescence is detected with sub-nanosecond resolution. We introduce an approach to concurrently image the molecular emitter, which is based on an individual defect, with its local environment along with its luminescence dynamics at a resolution of a billion frames per second. The observed dynamics can be assigned to the single electron capture occurring in the low-nanosecond regime. While the emitter's location on the surface remains fixed, the scanning of the tip modifies the energy landscape for charge injection to the defect. The principle of measurement is extendable to fundamental processes beyond charge transfer like exciton diffusion.

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