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E-book
Author Kehrein, Stefan.

Title The flow equation approach to many-particle systems / Stefan Kehrein
Published Berlin : Springer, 2006

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Description 1 online resource (xii, 170 pages) : illustrations
Series Springer tracts in modern physics, 0081-3869 ; 217
Springer tracts in modern physics ; 217. 0081-3869
Contents Introduction -- Transformation of the Hamiltonian -- Evaluation of Observables -- Interacting Many-Body Systems -- Modern Developments
Summary "This self-contained monograph addresses the flow equation approach to many-particle systems. The flow equation approach consists of a sequence of infinitesimal unitary transformations and is conceptually similar to renormalization and scaling methods. Flow equations provide a framework for analyzing Hamiltonian systems where these conventional many-body techniques fail. The text first discusses the general ideas and concepts of the flow equation method. In a second part these concepts are illustrated with various applications in condensed matter theory including strong-coupling problems and non-equilibrium systems. The monograph is accessible to readers familiar with graduate-level solid-state theory."--Jacket
Bibliography Includes bibliographical references and index
Notes Print version record
In Springer e-books
Subject Many-body problem.
Unitary transformations.
Hamiltonian systems.
Particles (Nuclear physics)
Quantum field theory.
Condensed matter.
Elementary Particles
particle physics.
SCIENCE -- Waves & Wave Mechanics.
Many-body problem.
Unitary transformations.
Hamiltonian systems.
Particles (Nuclear physics)
Quantum field theory.
Condensed matter.
Physique.
Condensed matter
Hamiltonian systems
Many-body problem
Particles (Nuclear physics)
Quantum field theory
Unitary transformations
Form Electronic book
LC no. 2006925894
ISBN 9783540340683
3540340688
354034067X
9783540340676
6610701253
9786610701254