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Effects of the electron-electron interaction on the surface of three-dimensional topological insulators

机译:电子-电子相互作用对三维拓扑绝缘子表面的影响

摘要

In the GW approximation, it has been shown that, owing to the electron-electron interaction, plasma satellites appear in the spectral function of a two-dimensional electron system on the surface of a topological insulator. They are due to the resonance plasmon-hole scattering. The contribution of satellites to the single-electron density of states is responsible for the downward energy shift of the minimum of the density, which is compared to the Dirac point in the experiment. To analyze the effect of vertex corrections on the resulting spectrum, a method has been proposed that goes beyond the GW approximation by summing ladder diagrams in the expansion of both the polarization function and self-energy. It has been shown with this method that the multiple electron-hole scattering hardly changes the resulting spectrum.
机译:在GW近似中,已经显示出,由于电子与电子的相互作用,等离子卫星出现在拓扑绝缘体表面的二维电子系统的光谱函数中。它们是由于共振等离子体激元-孔散射。卫星对单电子态密度的贡献是导致密度最小的能量向下移动的原因,这与实验中的狄拉克点相比较。为了分析顶点校正对所得频谱的影响,提出了一种方法,该方法通过在极化函数和自能的扩展中对梯形图求和来超越GW近似。用这种方法已经表明,多次电子-空穴散射几乎不会改变所得的光谱。

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