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Frequency-dependent polarizability, plasmons, and screening in the two-dimensional pseudospin-1 dice lattice

机译:二维伪自旋1骰子晶格中随频率变化的极化率,等离激元和屏蔽

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摘要

We calculate the dynamic polarizability under the random phase approximation for the dice lattice. This two-dimensional system gives rise to massless Dirac fermions with pseudospin-1 in the low-energy quantum excitation spectrum, providing a Dirac-cone plus flat-band dispersion. Due to the presence of the flat band, the polarizability shows key differences to that of graphene (the pseudospin-1/2 Dirac material). We find that the plasmon branch is pinched in to a single point, omega(p) = q = mu, independent of the background dielectric constant. Finally, screening effects are discussed with regard to impurities.
机译:我们在骰子晶格的随机相位近似下计算动态极化率。这种二维系统在低能量子激发光谱中产生了带有伪自旋1的无质量狄拉克费米子,从而提供了狄拉克锥加平带色散。由于存在平坦带,极化率显示出与石墨烯(伪自旋1/2 Dirac材料)的主要差异。我们发现等离激元分支被夹在一个点上,ω(p)= q = mu,与背景介电常数无关。最后,讨论了关于杂质的筛选效果。

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