Simple model for the dielectric constant of nanoscale silicon particle

As the physical size approaches several nanometers, reduction in the static dielectric constant ε becomes significant. A modified Penn model, taking into account the quantum confinement induced discrete energy states, was applied to a sphere and to a wire. The calculated size dependent ε is consiste...

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Veröffentlicht in:Journal of applied physics 1997-08, Vol.82 (3), p.1327-1329
Hauptverfasser: Tsu, Raphael, Babić, Davorin, Ioriatti, Liderio
Format: Artikel
Sprache:eng
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Zusammenfassung:As the physical size approaches several nanometers, reduction in the static dielectric constant ε becomes significant. A modified Penn model, taking into account the quantum confinement induced discrete energy states, was applied to a sphere and to a wire. The calculated size dependent ε is consistent with the wave-vector-dependent ε(q). However, this form of ε is more amenable for calculations of donor and exciton binding energies in a finite quantum confined nanoparticle when a full electrostatic boundary value problem must be tackled. The results of our model compare favorably with other, far more sophisticated, calculations.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.365762