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Hybrid Perovskite Terahertz Photoconductive Antenna

机译:Hybrid Perovskite太赫兹光电导天线

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摘要

Hybrid organic–inorganic perovskites, while well examined for photovoltaic applications, remain almost completely unexplored in the terahertz (THz) range. These low-cost hybrid materials are extremely attractive for THz applications because their optoelectronic properties can be chemically engineered with relative ease. Here, we experimentally demonstrate the first attempt to apply solution-processed polycrystalline films of hybrid perovskites for the development of photoconductive terahertz emitters. By using the widely studied methylammonium-based perovskites MAPbI3 and MAPbBr3, we fabricate and characterize large-aperture photoconductive antennas. The work presented here examines polycrystalline perovskite films excited both above and below the bandgap, as well as the scaling of THz emission with the applied bias field and the optical excitation fluence. The combination of ultrafast time-resolved spectroscopy and terahertz emission experiments allows us to determine the still-debated room temperature carrier lifetime and mobility of charge carriers in halide perovskites using an alternative noninvasive method. Our results demonstrate the applicability of hybrid perovskites for the development of scalable THz photoconductive devices, making these materials competitive with conventional semiconductors for THz emission.
机译:杂交有机无机钙钛矿,而在太赫兹(THz)范围内仍然仍然完全未开发的光伏应用。这些低成本的混合材料对于THz应用非常具有吸引力,因为它们的光电性能可以相对容易地进行化学工程化。在这里,我们通过实验证明了第一次尝试应用杂交钙酸盐的解决方案处理的多晶薄膜用于发光导光太赫兹发射器的开发。通过使用广泛研究的基于甲基钙质的Perovskites MapBi3和MapBbr3,我们制造和表征大孔径光电导通天线。本文介绍的作品在带隙上方和下方,检查了多晶钙钛矿薄膜,以及使用施加的偏置场和光学激发速度的THz发射的缩放。超快时间分辨光谱和太赫兹排放实验的组合允许我们使用替代的非侵入方法确定卤化物钙酸盐中静止室温载体寿命和电荷载体的迁移率。我们的结果表明,杂交钙锌矿对可扩展THz光电导器的开发的适用性,使这些材料具有与传统半导体竞争的,用于ZZ排放。

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