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Sommerfeld enhancement factor in two-dimensional Dirac materials

机译:二维Dirac材料的Sommerfeld增强因子

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In this work the above-band-gap absorption spectrum in two-dimensional Dirac materials is calculated with account for the interaction between the photocarriers. Both the screened Rytova-Keldysh and pure Coulomb attraction potentials between the electron and hole are used in the study. We find that in the materials under consideration, the interaction enhances the absorbance in the narrow interband edge region, in sharp contrast to the band model with the parabolic free-carrier energy dispersion. We develop an approximation of the weak interaction, which allows us to reproduce the main features of the exactly calculated Sommerfeld factor. We show a substantial reduction of this factor at higher frequencies due to the single-particle energy renormalization.
机译:在这项工作中,用占光载体之间的相互作用来计算二维DIAC材料中的上述带间隙吸收光谱。 在研究中使用电子和孔之间的屏蔽的Rytova-Keldysh和纯库仑吸引电位。 我们发现,在所考虑的材料中,相互作用提高了窄间带边缘区域的吸光度,与具有抛物线自由载体能量分散的带模型鲜明对比。 我们开发了弱交互的近似,这使我们能够再现恰好计算的Sommerfeld因子的主要特征。 由于单粒子能重整化,我们在较高频率下显着降低了该因素。

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