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Short-range excitonic phenomena in low-density metals

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arxiv 2301.00474 v1 pith:NOT7VCDN submitted 2023-01-01 cond-mat.str-el

classification cond-mat.str-el
keywords excitonicmodesphenomenadensityeffectselectron-holelow-densitylow-energy
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Excitonic effects in metals are commonly supposed to be weak, because the Coulomb interaction is strongly screened. We investigate the low-density regime of the homogeneous electron gas, where low-energy collective excitations and ghost modes were anticipated. Using the Bethe-Salpeter equation (BSE), we show that both phenomena exist thanks to reduced screening at short distances. This is not captured by common approximations used in ab initio BSE calculations, but requires vertex corrections that take the fermionic nature of charges into account. The electron-hole wavefunction of the low-energy modes shows strong and very anisotropic electron-hole correlation, which speaks for an excitonic character of these modes. The fact that short-range physics is at the origin of these phenomena explains why, on the other hand, also the simple adiabatic local density approximation to time-dependent density functional theory can capture these effects.

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Cited by 2 Pith papers

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  1. {\eta}-ensemble path integral Monte Carlo approach to the free energy of the warm dense electron gas and the uniform electron liquid

    physics.chem-ph 2024-12 conditional novelty 6.0 of 10

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  2. Separation between long- and short-range part of the Coulomb interaction in low dimensional systems: implications for the macroscopic screening length and the collective charge excitations

    cond-mat.mtrl-sci 2025-02 accept novelty 5.0 of 10

    A controlled separation of the Coulomb interaction yields a scalar macroscopic dielectric function for 2D materials, letting plasmons and excitons be identified by zero crossings of its real part and screening lengths...

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