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Stark Effect In A Hydrogenic Atom Or Ion Treated By The Phaseintegral Method Nanny Froman Per Olof Froman A Hokback

  • SKU: BELL-2632310
Stark Effect In A Hydrogenic Atom Or Ion Treated By The Phaseintegral Method Nanny Froman Per Olof Froman A Hokback
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Stark Effect In A Hydrogenic Atom Or Ion Treated By The Phaseintegral Method Nanny Froman Per Olof Froman A Hokback instant download after payment.

Publisher: Imperial College Press
File Extension: PDF
File size: 1.64 MB
Pages: 157
Author: Nanny Fröman; Per Olof Fröman; A Hökback
ISBN: 9781860949258, 1860949258
Language: English
Year: 2008

Product desciption

Stark Effect In A Hydrogenic Atom Or Ion Treated By The Phaseintegral Method Nanny Froman Per Olof Froman A Hokback by Nanny Fröman; Per Olof Fröman; A Hökback 9781860949258, 1860949258 instant download after payment.

Compiled to illustrate the recent history of quantum field theory and its trends, this collection of selected reprints by Frohlich aims to be a comprehensive guide of the more mathematical aspects of the subject. Results and methods of the past 15 years are reviewed. The analytical methods employed are non-perturbative and, for the larger part, mathematically rigorous. Most articles are review articles surveying certain important developments in quantum field theory and guiding the reader towards the original literature. The theory of phase transitions and spontaneous symmetry breaking is reviewed in the first section. The second section discusses the non-perturbative quantization of topological solitons. The third section is devoted to the study of gauge fields. A paper on the triviality of (labda phi) to the power of 4 - theory in four and more dimensions is found in the fourth section, while the fifth contains two articles on "random geometry". The sixth and final part addresses topics in low-dimensional quantum field theory, including braid statistics, two-dimensional conformal field theory and an application to condensed matter theory. The volume begins with a comprehensive introduction by Jurg Frohlich Schrodinger Equation, Its Separation and Its Exact Eigenfunctions; Development in Time of the Probability Amplitude for a Decaying State; Phase-Integral Method; Derivation of Phase-Integral Formulas for Profiles, Energies and Half-Widths of Stark; Procedure for Transformation of the Phase-Integral Formulas into Formulas Involving Complete Elliptic Integrals; Phase-Integral Quantities and Their Partial Derivatives with Respect to E and Z1; Numerical Results

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