论文标题

在2D量子极限处原子薄的有机半导体中激子的超级传输

Super-transport of Excitons in Atomically Thin Organic Semiconductors at the 2D Quantum Limit

论文作者

Sharma, Ankur, Zhang, Linglong, Tollerud, Jonathan O., Dong, Miheng, Zhu, Yi, Halbich, Robert, Vogl, Tobias, Liang, Kun, Nguyen, Hieu T., Wang, Fan, Sanwlani, Shilpa, Earl, Stuart K., Macdonald, Daniel, Lam, Ping Koy, Davis, Jeff A., Lu, Yuerui

论文摘要

连贯的激子的远程和快速运输对于开发高速激子电路和量子计算应用非常重要。但是,这些相干激子大多数仅在与空腔相结合时仅在一些低维半导体中观察到,因为在其本地材料的本地状态下,对激子运输的不均匀宽扩大和衰减作用。在这里,通过将连贯的激子以2D量子极限限制,我们首先观察到了分子聚集,可以在相干状态之间的原子较薄的二维(2D)有机半导体中进行激发子的超级传输,并具有高效的346.9 cm2/sec/sec sec/sec sec的高效激发激发系数。该值比其他有机分子聚集体和低维无机材料的报道值高一到几个数量级。没有与任何光腔耦合,单层五苯样品样品,非常干净的2D量子系统(1.2 nm厚)具有高结晶度(J型聚集)和最小的互化状态,表现出了frenkel激进的超级级别的排放,这是由温度依赖性光电限制(PLEDEDERDECTISS降低)的高度确认的,它是高度增强的(PL依赖性的),并显示宽度和强烈的平面内发射。观察到单层五苯样品的相干性在135个分子上被定位,该分子明显大于其他有机薄膜中观察到的值(一些分子)。此外,单层五苯样品中激子的超级传输表现出高度各向异性的行为。我们的结果为开发未来的高速激子电路,快速OLED和其他光电设备铺平了道路。

Long-range and fast transport of coherent excitons is important for development of high-speed excitonic circuits and quantum computing applications. However, most of these coherent excitons have only been observed in some low-dimensional semiconductors when coupled with cavities, as there are large inhomogeneous broadening and dephasing effects on the exciton transport in their native states of the materials. Here, by confining coherent excitons at the 2D quantum limit, we firstly observed molecular aggregation enabled super-transport of excitons in atomically thin two-dimensional (2D) organic semiconductors between coherent states, with a measured a high effective exciton diffusion coefficient of 346.9 cm2/sec at room temperature. This value is one to several orders of magnitude higher than the reported values from other organic molecular aggregates and low-dimensional inorganic materials. Without coupling to any optical cavities, the monolayer pentacene sample, a very clean 2D quantum system (1.2 nm thick) with high crystallinity (J type aggregation) and minimal interfacial states, showed superradiant emissions from the Frenkel excitons, which was experimentally confirmed by the temperature-dependent photoluminescence (PL) emission, highly enhanced radiative decay rate, significantly narrowed PL peak width and strongly directional in-plane emission. The coherence in monolayer pentacene samples was observed to be delocalized over 135 molecules, which is significantly larger than the values (a few molecules) observed from other organic thin films. In addition, the super-transport of excitons in monolayer pentacene samples showed highly anisotropic behaviour. Our results pave the way for the development of future high-speed excitonic circuits, fast OLEDs, and other opto-electronic devices.

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