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Stokes and anti-Stokes Raman scattering in mono- and bilayer graphene

机译:斯托克斯,在mono - anti-Stokes喇曼散射和双层石墨烯

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Stokes and anti-Stokes Raman spectroscopy associated with the intervalley double resonance process in carbon materials is a unique technique to reveal the relationship between their characteristic electronic band structures and phonon dispersion. In graphene, the dominant resonant behavior for its 2D mode is an intervalley triple resonance Raman process. In this paper, we report the Stokes and anti-Stokes Raman scattering of the 2D mode in pristine graphene. The excitation energy (E-ex)-dependent frequency discrepancy between anti-Stokes and Stokes components of the 2D mode ((2D)) is observed, which is in good agreement with the theoretical results. This is attributed to the nonlinear dispersion of the in-plane transverse optical (iTO) phonon branch near the K point, confirmed by the nonlinear E-ex-dependent frequency of the 2D mode ((2D)) in the range of 1.58-3.81 eV. The wavevector-dependent phonon group velocity of the iTO phonon branch is directly derived from (2D). The Stokes and anti-Stokes Raman scattering of the D mode in defected graphene and the 2D mode in bilayer graphene associated with intervalley double resonance Raman processes is also reported.
机译:斯托克斯和anti-Stokes拉曼光谱与intervalley双共振有关过程中碳材料是一种独特的技术揭示他们之间的关系电子能带结构和特征声子色散。为其2 d模式是一种共振行为intervalley三重共振喇曼过程。这篇文章中,我们报告斯托克斯和anti-Stokes拉曼散射的2 d在原始模式石墨烯。频率anti-Stokes和之间的差异斯托克斯分量的2 d模式((2 d))观察到的,这是在良好的协议理论结果。平面横向非线性色散光学(iTO)声子分支K点附近,由非线性E-ex-dependent证实频率的2 d模式((2 d))的范围1.58 - -3.81 eV。iTO声子分支的群速度直接来源于(2 d)。anti-Stokes喇曼散射的D模式叛逃双层石墨烯和2 d模式石墨烯与intervalley双相关联共振拉曼过程也报道。

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