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Non-perturbative Description of Quantum Systems - Without Small Parameters

English · Paperback / Softback

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Description

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This book introduces systematically the operator method for the solution of the Schrödinger equation. This method permits to describe the states of quantum systems in the entire range of parameters of Hamiltonian with a predefined accuracy. The operator method is unique compared with other non-perturbative methods due to its ability to deliver in zeroth approximation the uniformly suitable estimate for both ground and excited states of quantum system. The method has been generalized for the application to quantum statistics and quantum field theory. In this book, the numerous applications of operator method for various physical systems are demonstrated. Simple models are used to illustrate the basic principles of the method which are further used for the solution of complex problems of quantum theory for many-particle systems. The results obtained are supplemented by numerical calculations, presented as tables and figures.

List of contents

Capabilities of approximate methods in quantum theory.- Basics of the operator method.- Applications of OM for one-dimensional systems.- Operator method for quantum statistics.- Quantum systems with several degrees of freedom.- Two-dimensional exciton in magnetic field with arbitrary strength.- Atoms in the external electromagnetic fields.- Many-electron atoms.- Systems with infinite number of degrees of freedom.

Summary

This book introduces systematically the operator method for the solution of the Schrödinger equation. This method permits to describe the states of quantum systems in the entire range of parameters of Hamiltonian with a predefined accuracy. The operator method is unique compared with other non-perturbative methods due to its ability to deliver in zeroth approximation the uniformly suitable estimate for both ground and excited states of quantum system. The method has been generalized for the application to quantum statistics and quantum field theory. In this book, the numerous applications of operator method for various physical systems are demonstrated. Simple models are used to illustrate the basic principles of the method which are further used for the solution of complex problems of quantum theory for many-particle systems. The results obtained are supplemented by numerical calculations, presented as tables and figures.

Product details

Authors Ily Feranchuk, Ilya Feranchuk, Alexe Ivanov, Alexey Ivanov, Van-Hoang Le, Van-Hoang et al Le, Alexander Ulyanenkov
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2015
 
EAN 9783319130057
ISBN 978-3-31-913005-7
No. of pages 362
Dimensions 157 mm x 236 mm x 22 mm
Weight 588 g
Illustrations XV, 362 p. 63 illus., 43 illus. in color.
Series Lecture Notes in Physics
Lecture Notes in Physics
Subjects Natural sciences, medicine, IT, technology > Physics, astronomy > Theoretical physics

B, Kernphysik, Mathematische Physik, Physics, Quantum Physics, Nuclear physics, Physics and Astronomy, Atomic structure, Molecular structure, Atomic/Molecular Structure and Spectra, Atomic and Molecular Structure and Properties, Mathematical physics, Mathematical Methods in Physics

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