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Ultrafast correlated charge and lattice motion in a hybrid metal halide perovskite

机译:混合金属卤化物钙钛矿中的超快相关电荷和晶格运动

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摘要

Hybrid organic-inorganic halide perovskites have shown remarkable optoelectronic properties, exhibiting an impressive tolerance to defects believed to originate from correlated motion of charge carriers and the polar lattice forming large polarons. Few experimental techniques are capable of directly probing these correlations, requiring simultaneous sub–millielectron volt energy and femtosecond temporal resolution after absorption of a photon. Here, we use time-resolved multi-THz spectroscopy, sensitive to the internal excitations of the polaron, to temporally and energetically resolve the coherent coupling of charges to longitudinal optical phonons in single-crystal CH3NH3PbI3 (MAPI). We observe room temperature intraband quantum beats arising from the coherent displacement of charge from the coupled phonon cloud. Our measurements provide strong evidence for the existence of polarons in MAPI at room temperature, suggesting that electron/hole-phonon coupling is a defining aspect of the hybrid metal-halide perovskites contributing to the protection from scattering and enhanced carrier lifetimes that define their usefulness in devices.
机译:杂化有机-无机卤化物钙钛矿具有出色的光电性能,对缺陷的耐受性令人印象深刻,这些缺陷被认为是由电荷载流子和形成大极化子的极性晶格的相关运动引起的。很少有实验技术能够直接探测这些相关性,在吸收光子之后,需要同时具有亚毫伏电子伏特能量和飞秒时间分辨率。在这里,我们使用对极化子的内部激发敏感的时间分辨多THz光谱,在时间和能量上解决了单晶CH3NH3PbI3(MAPI)中电荷与纵向光学声子的相干耦合。我们观察到由于耦合声子云中电荷的相干位移而引起的室温带内量子拍。我们的测量为室温下MAPI中存在极化子提供了有力的证据,表明电子/空穴-声子耦合是钙钛矿杂化金属卤化物的一个决定性方面,有助于防止散射和延长载流子寿命,从而定义了它们的用途。设备。

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