Fr. 273.00

Theory of the Inhomogeneous Electron Gas

English · Hardback

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Description

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The theory of the inhomogeneous electron gas had its origin in the Thomas Fermi statistical theory, which is discussed in the first chapter of this book. This already leads to significant physical results for the binding energies of atomic ions, though because it leaves out shell structure the results of such a theory cannot reflect the richness of the Periodic Table. Therefore, for a long time, the earlier method proposed by Hartree, in which each electron is assigned its own personal wave function and energy, dominated atomic theory. The extension of the Hartree theory by Fock, to include exchange, had its parallel in the density description when Dirac showed how to incorporate exchange in the Thomas-Fermi theory. Considerably later, in 1951, Slater, in an important paper, showed how a result similar to but not identical with that of Dirac followed as a simplification of the Hartree-Fock method. It was Gombas and other workers who recognized that one could also incorporate electron correlation consistently into the Thomas-Fermi-Dirac theory by using uniform electron gas relations locally, and progress had been made along all these avenues by the 1950s.

List of contents

1. Origins-The Thomas-Fermi Theory.- 2. General Density Functional Theory.- 3. Density Oscillations in Nonuniform Systems.- 4. Applications of Density Functional Theory to Atoms, Molecules, and Solids.- 5. Density Functional Approach to the Electronic Structure of Metal Surfaces and Metal-Adsorbate Systems.

Product details

Assisted by H March (Editor), H March (Editor), Sti Lundqvist (Editor), Stig Lundqvist (Editor), Norman H. March (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 30.06.2009
 
EAN 9780306412073
ISBN 978-0-306-41207-3
No. of pages 396
Dimensions 155 mm x 235 mm x 27 mm
Weight 783 g
Illustrations XIV, 396 p.
Series Physics of Solids and Liquids
Physics of Solids and Liquids
Subjects Natural sciences, medicine, IT, technology > Physics, astronomy > Atomic physics, nuclear physics
Non-fiction book > Nature, technology > Astronomy: general, reference works

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