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Frequency-dependent polarizability, plasmons, and screening in the 2D pseudospin-1 dice lattice

Published 25 Jan 2016 in cond-mat.mes-hall, cond-mat.mtrl-sci, and cond-mat.str-el | (1601.06757v2)

Abstract: 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.

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