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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Dynamic polarization and plasmons in Kekule-patterned graphene: Signatures of broken valley degeneracy
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Dynamic polarization and plasmons in Kekule-patterned graphene: Signatures of broken valley degeneracy

机译:尾骨图案石墨烯的动态极化和等离子体:破碎谷退化的特征

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The dynamic polarization for Kekule-patterned graphene is studied within the random phase approximation (RPA). It is shown how the breaking of the valley degeneracy by the lattice modulation is manifested through the dielectric spectrum, the plasmonic dispersion, the static screening, and the optical conductivity. The valley-dependent splitting of the Fermi velocities due to the Kekule distortion leads to a similar splitting in the dielectric spectrum of graphene. introducing new characteristic frequencies, which are given in terms of the valley-coupling amplitude. The valley coupling also splits the plasmonic dispersion, introducing a second branch in the Landau damping region. Finally, the signatures of the broken valley degeneracy in the optical conductivity are studied. The characteristic steplike spectrum of graphene is split into two half steps due to the onset of absorption in each valley occurring at different characteristic frequencies. Also, an absorption phenomenon was found where a resonance peak related to intervalley transport emerges at a "beat frequency," determined by the difference between the characteristic frequencies of each valley. Some of these mechanisms are expected to be present in other space-modulated 2D materials and suggest how optical or electrical response measurements can be suitable to detect spatial modulation.
机译:在随机相位近似(RPA)内研究了kekule图案化石墨烯的动态极化。示出了如何通过晶格调制破坏谷变性的破坏,表现为通过介电光谱,等离子体分散体,静态筛选和光学导电性。由于颗粒失真引起的FERMI速度的谷依赖性分裂导致石墨烯介电光谱中的类似分裂。引入新的特征频率,这是谷耦合幅度的贡献。谷耦合还分裂等离子体分散体,在Landau阻尼区域引入第二分支。最后,研究了在光导中的破碎谷退化的签名。由于在不同特性频率下发生的每个谷在不同的谷类中的吸收开始,石墨烯的特征温度谱分为两个半步骤。而且,发现吸收现象,其中与intervalley运输有关的共振峰以“拍频”出现,由每个谷的特征频率之间的差异决定。预计这些机制中的一些将存在于其他空间调制的2D材料中,并建议光学或电响应测量如何适合于检测空间调制。

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  • 来源
    《Physical review.B.Condensed matter and materials physics 》 |2020年第20期| 205429.1-205429.9| 共9页
  • 作者单位

    Depto. de Sistemas Complejos Institute de Fisica Universidad Nacional Autonoma de Mexico (UNAM) Apdo. Postal 20-364 01000 CDMX Mexico;

    Depto. de Sistemas Complejos Institute de Fisica Universidad Nacional Autonoma de Mexico (UNAM) Apdo. Postal 20-364 01000 CDMX Mexico;

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