Advances in Quantum Chemistry: Theory of Confined Quantum Systems - Part Two by John R. SabinAdvances in Quantum Chemistry: Theory of Confined Quantum Systems - Part Two by John R. Sabin

Advances in Quantum Chemistry: Theory of Confined Quantum Systems - Part Two

byJohn R. SabinEditorBrandas

Hardcover | June 12, 2009

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Advances in Quantum Chemistrypresents surveys of current developments in this rapidly developing field. With invited reviews written by leading international researchers, each presenting new results, it provides a single vehicle for following progress in this interdisciplinary area.

* Publishes articles, invited reviews and proceedings of major international conferences and workshops
* Written by leading international researchers in quantum and theoretical chemistry
* Highlights important interdisciplinary developments
John R. Sabin is Professor of Physics and Chemistry Emeritus at the University of Florida, and Adjungeret Professor at the University of Southern Denmark. He received the AB degree from Williams College in 1962 and the PhD from the University of New Hampshire in 1966. Thereafter he was a postdoctoral student at Uppsala University and a...
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Title:Advances in Quantum Chemistry: Theory of Confined Quantum Systems - Part TwoFormat:HardcoverDimensions:308 pages, 9 × 6 × 0.98 inPublished:June 12, 2009Publisher:Academic PressLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0123750741

ISBN - 13:9780123750747

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Table of Contents

Modeling pressure effects on the electronic properties of Ca, Sr and Ba by the confined atom model (D. Guerra, R. Vargas, P. Fuentealba, and J. Garza)
Photoionization of atoms encaged in spherical fullerenes (V.K. Dolmatov)
DFT study of molecules confined inside fullerene and fullerene-like cages (O.P. Charkin, N.M. Klimenko, and D.O. Charkin)
Spectroscopy of confined atomic systems: effect of plasma (A.N. Sil, S. Canuto and P.K. Mukherjee)
The energy level structure of low-dimensional multi-electron quantum dots (T. Sako, J. Paldus and G.H.F. Diercksen)
Engineering quantum confined silicon nanostructures: ab-initio study of the structural, electronic and optical properties (E. Degoli and S. Ossicini)