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Momentum-Resolved Dielectric Response of Free-Standing Mono-, Bi-, and Trilayer Black Phosphorus

机译:势头分辨的单机,双和三层黑磷的介电响应

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摘要

Black phosphorus (BP), a 2D semiconducting material of interest in electronics and photonics, exhibits physical properties characterized by strong anisotropy and band gap energy that scales with reducing layer number. However, the investigation of its intrinsic properties is challenging because thin-layer BP is photo-oxidized under ambient conditions and the energy of its electronic states shifts in different dielectric environments. We prepared free-standing samples of few-layer BP under glovebox conditions and probed the dielectric response in a vacuum using scanning transmission electron microscopy and electron energy loss spectroscopy (STEM-EELS). Thresholds of the excitation energy are measured at 1.9, 1.4, and 1.1 eV for the mono-, bi-, and trilayer BP, respectively, and these values are used to estimate the corresponding optical band gaps. A comparison of our results with electronic structure calculations indicates that the variation of the quasi-particle gap is larger than that of the exciton binding energy. The dispersion of the plasmons versus momentum for one- to three-layer BP and bulk BP highlights a deviation from parabolic to linear dispersion and strong anisotropic fingerprints.
机译:黑色磷(BP),电子和光子学中的2D半导体材料,表现出具有强烈各向异性和带隙能量的物理性质,其具有减小层数的尺度。然而,对其本质性质的研究是具有挑战性的,因为薄层BP在环境条件下被光氧化,其电子状态的能量在不同的介电环境中移位。我们在Glovebox条件下准备了几层BP的独立式样品,并使用扫描透射电子显微镜和电子能损光谱(茎鳗)探测真空中的介电响应。激发能量的阈值分别用于1.9,1.4和1.1eV,分别用于单体,二层和三层BP,并且这些值用于估计相应的光带间隙。我们通过电子结构计算的结果的比较表明,准粒子间隙的变化大于激子结合能量的变化。等离子体对一个至三层BP和散装BP的动量的分散突出了抛物线与线性分散和强各向异性指纹的偏差。

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