Regularity and Approximability of Electronic Wave Functions Regularity and Approximability of Electronic Wave Functions
Lecture Notes in Mathematics

Regularity and Approximability of Electronic Wave Functions

    • $54.99
    • $54.99

Publisher Description

The electronic Schrödinger equation describes the motion of N-electrons under Coulomb interaction forces in a field of clamped nuclei. The solutions of this equation, the electronic wave functions, depend on 3N variables, with three spatial dimensions for each electron. Approximating these solutions is thus inordinately challenging, and it is generally believed that a reduction to simplified models, such as those of the Hartree-Fock method or density functional theory, is the only tenable approach. This book seeks to show readers that this conventional wisdom need not be ironclad: the regularity of the solutions, which increases with the number of electrons, the decay behavior of their mixed derivatives, and the antisymmetry enforced by the Pauli principle contribute properties that allow these functions to be approximated with an order of complexity which comes arbitrarily close to that for a system of one or two electrons. The text is accessible to a mathematical audience at the beginning graduate level as well as to physicists and theoretical chemists with a comparable mathematical background and requires no deeper knowledge of the theory of partial differential equations, functional analysis, or quantum theory.

GENRE
Science & Nature
RELEASED
2010
19 May
LANGUAGE
EN
English
LENGTH
196
Pages
PUBLISHER
Springer Berlin Heidelberg
SELLER
Springer Nature B.V.
SIZE
2.8
MB
Photonic Crystals: Mathematical Analysis and Numerical Approximation Photonic Crystals: Mathematical Analysis and Numerical Approximation
2011
Spectral Theory Spectral Theory
2020
Partial Differential Equations and Spectral Theory Partial Differential Equations and Spectral Theory
2011
MATH FEYNMAN PATH INTEG (2ND ED) MATH FEYNMAN PATH INTEG (2ND ED)
2021
Operator Theory, Analysis and Mathematical Physics Operator Theory, Analysis and Mathematical Physics
2007
Determining Spectra in Quantum Theory Determining Spectra in Quantum Theory
2006
Planar Maps, Random Walks and Circle Packing Planar Maps, Random Walks and Circle Packing
2019
Mathematical Modeling and Validation in Physiology Mathematical Modeling and Validation in Physiology
2012
Numerical Methods for Metric Graphs Numerical Methods for Metric Graphs
2025
Relative Rearrangement Relative Rearrangement
2025
Global Logarithmic Deformation Theory Global Logarithmic Deformation Theory
2025
Discrete Weak KAM Theory Discrete Weak KAM Theory
2025