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Correlated electron-hole plasma in organometal perovskites

机译:有机金属钙钛矿中的相关电子空穴等离子体

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Organic-inorganic perovskites are a class of solution-processed semiconductors holding promise for the realization of low-cost efficient solar cells and on-chip lasers. Despite the recent attention they have attracted, fundamental aspects of the photophysics underlying device operation still remain elusive. Here we use photoluminescence and transmission spectroscopy to show that photoexcitations give rise to a conducting plasma of unbound but Coulomb-correlated electron-hole pairs at all excitations of interest for light-energy conversion and stimulated optical amplification. The conductive nature of the photoexcited plasma has crucial consequences for perovskite-based devices: in solar cells, it ensures efficient charge separation and ambipolar transport while, concerning lasing, it provides a low threshold for light amplification and justifies a favourable outlook for the demonstration of an electrically driven laser. We find a significant trap density, whose cross-section for carrier capture is however low, yielding a minor impact on device performance.
机译:有机-无机钙钛矿是一类经过溶液处理的半导体,有望实现低成本高效的太阳能电池和片上激光器。尽管最近吸引了他们的注意,但设备操作背后的光物理基本方面仍然难以捉摸。在这里,我们使用光致发光和透射光谱法表明,在所有感兴趣的光能转换和受激光放大激发中,光激发会产生未结合但与库仑相关的电子-空穴对的导电等离子体。光激发等离子体的导电性质对钙钛矿基器件具有至关重要的影响:在太阳能电池中,它可确保有效的电荷分离和双极性传输,而在发射激光时,它可提供较低的光放大阈值,并有很好的前景证明电驱动的激光器。我们发现了显着的陷阱密度,但是其载流子捕获的横截面很低,对器件性能的影响很小。

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