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Layer-Dependent Ultrafast Carrier and Coherent Phonon Dynamics in Black Phosphorus

机译:黑色磷中依赖层超快载波和相干声子动力学

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Black phosphorus is a layered semiconducting material, demonstrating strong layer-dependent optical and electronic properties. Probing the photophysical properties on ultrafast time scales is of central importance in understanding many-body interactions and nonequilibrium quasiparticle dynamics. Here, we applied temporally, spectrally, and spatially resolved pump-probe microscopy to study the transient optical responses of mechanically exfoliated few-layer black phosphorus, with layer numbers ranging from 2 to 9. We have observed layer-dependent resonant transient absorption spectra with both photobleaching and red-shifted photoinduced absorption features, which could be attributed to band gap renormalization of higher subband transitions. Surprisingly, coherent phonon oscillations with unprecedented intensities were observed when the probe photons were in resonance with the optical transitions, which correspond to the low-frequency layer-breathing mode. Our results reveal strong Coulomb interactions and electron-phonon couplings in photoexcited black phosphorus, providing important insights into the ultrafast optical, nanomechanical, and optoelectronic properties of this novel two-dimensional material.
机译:黑色磷是层状半导体材料,证明了强大的层依赖性光学和电子性能。探测超快时间尺度的光物理性质在理解许多身体相互作用和非Quasiplicle动态方面具有核心重要性。这里,我们在时间上,光谱和空间分辨的泵探针显微镜施加,以研究机械剥离的几层黑色磷的瞬态光学响应,其中层数为2至9.我们已经观察到层依赖于谐振瞬态吸收光谱光截图和红移光抑制的吸收特征,可归因于更高子带转换的带隙重整化。令人惊讶的是,当探针光子与光学转变谐振时,观察到具有前所未有的强度的相干声子振荡,该光学转变对应于低频层呼吸模式。我们的结果揭示了光透镜黑磷中强大的库仑相互作用和电子 - 声子耦合,提供了这种新型二维材料的超快光学,纳米力学和光电性能的重要见解。

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