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首页> 外文期刊>Science Advances >Excitons in 2D perovskites for ultrafast terahertz photonic devices
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Excitons in 2D perovskites for ultrafast terahertz photonic devices

机译:超速普拉斯特茨光子器件的2D Perovskites中的激子

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摘要

In recent years, two-dimensional (2D) Ruddlesden-Popper perovskites have emerged as promising candidates for environmentally stable solar cells, highly efficient light-emitting diodes, and resistive memory devices. The remarkable existence of self-assembled quantum well (QW) structures in solution-processed 2D perovskites offers a diverse range of optoelectronic properties, which remain largely unexplored. Here, we experimentally observe ultrafast relaxation of free carriers in 20 ps due to the quantum confinement of free carriers in a self-assembled QW structures that form excitons. Furthermore, hybridizing the 2D perovskites with metamaterials on a rigid and a flexible substrate enables modulation of terahertz fields at 50-GHz modulating speed, which is the fastest for a solution-processed semiconductor-based photonic device. Hence, an exciton-based ultrafast response of 2D perovskites opens up large avenues for a wide range of scalable dynamic photonic devices with potential applications in flexible photonics, ultrafast wavefront control, and short-range wireless terahertz communications.
机译:近年来,二维(2D)Ruddlesden-Popper Povskites已经成为对环境稳定的太阳能电池,高效发光二极管和电阻存储器件的承诺候选者。解决方案处理的2D Perovskites中的自组装量子阱(QW)结构的显着存在提供了各种光电性能,这在很大程度上是未开发的。在这里,我们通过在形成激子的自组装QW结构中的量子限制,通过在20 ps中实验在20 ps中观察自由载体的超快放松。此外,用刚性和柔性基板上的超材料杂交2D钙锌矿,使得在50-GHz调节速度下能够调制太赫兹场,这是用于解决方案化的基于半导体的光子器件的最快。因此,2D PEROVSKITES的基于激子的超快响应为广泛的可扩展动态光子器件开辟了大途径,其具有柔性光子学,超快波前控制和短程无线太赫兹通信的潜在应用。

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