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Seeing Many-Body Effects in Single- and Few-Layer Graphene: Observation of Two-Dimensional Saddle-Point Excitons

机译:在单层和少层石墨烯中看到多体效应:二维鞍点激子的观察

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摘要

Significant excitonic effects were observed in graphene by measuring its optical conductivity in a broad spectral range including the two-dimensional π-band saddle-point singularities in the electronic structure. The strong electron-hole interactions manifest themselves in an asymmetric resonance peaked at 4.62 eV, which is redshifted by nearly 600 meV from the value predicted by ab initio GW calculations for the band-to-band transitions. The observed excitonic resonance is explained within a phenomenological model as a Fano interference of a strongly coupled excitonic state and a band continuum. Our experiment also showed a weak dependence of the excitonic resonance in few-layer graphene on layer thickness. This result reflects the effective cancellation of the increasingly screened repulsive electron-electron (e-e) and attractive electron-hole (e-h) interactions.
机译:通过在宽光谱范围内测量石墨烯的光导率,包括在电子结构中的二维π带鞍点奇点,可以观察到显着的激子效应。强的电子-空穴相互作用以不对称共振表现出来,该共振峰在4.62 eV处出现,与从头算GW计算得出的带间跃迁所预测的值相比,发生了红移近600 meV。在现象学模型中将观察到的激子共振解释为强耦合激子态和谱带连续体的Fano干扰。我们的实验还表明,几层石墨烯中的激子共振对层厚度的依赖性很弱。该结果反映出有效消除了逐渐屏蔽的排斥电子-电子(e-e)和有吸引力的电子-空穴(e-h)相互作用。

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