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Van der Waals interaction between an atom and a solid surface

Physical review. B, Solid state · 1976 · Vol. 13(6) · pp. 2270–2285
E. ZarembaW. Kohn

Abstract

This paper contributes to the theory of the long-range attractive polarization force between a neutral atom and a crystalline solid surface in the nonrelativistic limit. The first two terms in the asymptotic expansion of the polarization energy are used to define an atom-solid potential of the form ${V}_{\mathrm{pol}}=\ensuremath{-}C{(Z\ensuremath{-}{Z}_{0})}^{\ensuremath{-}3}$. The constant $C$ appearing in this expression is known from the earlier work of E. M. Lifshitz. The present paper gives a theory of the position of the "reference plane," ${Z}_{0}$, which is important in applications to physisorption. An explicit expression for ${Z}_{0}$ is first derived for atoms interacting with a jellium metal and with an insulating crystal consisting of atoms which interact via dipole-dipole forces. These model calculations are then incorporated into a computation of the polarization energies of rare-gas atoms physisorbed on noble-metal surfaces. The computed energies are found to be consistent with observed adsorption energies.

Quantum Electrodynamics and Casimir EffectQuantum, superfluid, helium dynamicsCold Atom Physics and Bose-Einstein CondensatesVan der Waals radiusJelliumvan der Waals forceAtomic physicsAtom (system on chip)PhysicsPhysisorptionPolarization (electrochemistry)Van der Waals strainDipole
Citations
665
FWCI
8.30
field-weighted impact
References
21
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References
Theory of Metal Surfaces: Induced Surface Charge and Image Potential
Physical review. B, Solid state · 1973 · 891 citations
Dynamical Theory of Crystal Lattices
American Journal of Physics · 1955 · 10,521 citations
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