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- W2069620200 abstract "The self-energy of a hydrogen atom placed between two parallel metal plates is calculated. The evaluation, based on the plasmon model for the metal electrons, takes into account the often-neglected dispersion effects of the surface plasmons. Keeping the atom at the center of the gap, the self-energy is obtained as a function of the gap width. We demonstrate that the effect of plasma dispersion can be a significant factor in the determination of self-energy. The plasmon model is known to provide reasonably accurate values for the self-energy when the atom is at sufficiently large distance away from the surface. But the model is not particularly precise when the atom is very close to the surface. Nevertheless, the plasmon model is capable of providing rough estimates for the self-energy for all the separations between the metal plates. Compared to other many-body methods, the advantage of the plasmon model is that it gives the self-energy directly and with minimum of efforts." @default.
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- W2069620200 date "1999-09-01" @default.
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- W2069620200 title "Van der Waals energy of a hydrogen atom placed between two parallel metal plates" @default.
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- W2069620200 doi "https://doi.org/10.1016/s0921-4526(99)00140-4" @default.
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