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Density-functional approach to local-field effects in finite systems: Photoabsorption in the rare gases

Physical review. A, General physics · 1980 · Vol. 21(5) · pp. 1561–1572
Andrew ZangwillPaul Soven

Abstract

We present a formalism based on density-functional theory capable of describing polarization-type many-body effects influencing the photoresponse of small electronic systems. The self-consistent field approach we describe incorporates correlations into a local, effective single-particle potential which takes account of the time-dependent fields induced by an external radiation field. In this paper we present calculations of the static polarizabilities, total photoabsorption cross sections, and selected partial photoabsorption cross sections of the rare gases which yield results in good agreement with experiment. A study of the energy and spatial dependence of the local field leads to a clear physical picture of the dielectric properties of these systems.

Advanced Chemical Physics StudiesHigh-pressure geophysics and materialsQuantum, superfluid, helium dynamicsPhysicsFormalism (music)Polarization (electrochemistry)Local fieldPolarizabilityDielectricElectric fieldElectronic structureAtomic physicsComputational physics

Funding

  • National Science Foundation
  • Division of Materials Research
Citations
1,038
FWCI
8.31
field-weighted impact
References
36
Percentile
99%
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References
The theory of quantum liquids
Journal of the Franklin Institute · 1966 · 2,289 citations
The calculation of atomic structures
Journal of Physics and Chemistry of Solids · 1958 · 442 citations
Advances in atomic and molecular physics
Nuclear Physics A · 1969 · 725 citations
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