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Density Matrix Theory and Applications: Physics of Atoms and Molecules

Autor Karl Blum
en Limba Engleză Paperback – 6 dec 2010
Quantum mechanics has been mostly concerned with those states of systems that are represented by state vectors. In many cases, however, the system of interest is incompletely determined; for example, it may have no more than a certain probability of being in the precisely defined dynamical state characterized by a state vector. Because of this incomplete knowledge, a need for statistical averaging arises in the same sense as in classical physics. The density matrix was introduced by J. von Neumann in 1927 to describe statistical concepts in quantum mechanics. The main virtue of the density matrix is its analytical power in the construction of general formulas and in the proof of general theorems. The evaluation of averages and probabilities of the physical quantities characterizing a given system is extremely cumbersome without the use of density matrix techniques. The representation of quantum mechanical states by density matrices enables the maximum information available on the system to be expressed in a compact manner and hence avoids the introduction of unnecessary variables. The use of density matrix methods also has the advan­ tage of providing a uniform treatment of all quantum mechanical states, whether they are completely or incompletely known. Until recently the use of the density matrix method has been mainly restricted to statistical physics. In recent years, however, the application of the density matrix has been gaining more and more importance in many other fields of physics.
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Specificații

ISBN-13: 9781441932570
ISBN-10: 1441932577
Pagini: 344
Ilustrații: XV, 327 p. 1 illus.
Dimensiuni: 210 x 279 x 18 mm
Greutate: 0.48 kg
Ediția:Softcover reprint of hardcover 2nd ed. 1996
Editura: Springer Us
Colecția Springer
Seria Physics of Atoms and Molecules

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

1. Basic Concepts.- 2. General Density Matrix Theory.- 3. Coupled Systems.- 4. Irreducible Components of the Density Matrix.- 5. Radiation from Polarized Atoms. Quantum Beats.- 6. Some Applications.- 7. The Role of Orientation and Alignment in Molecular Processes.- 8. Quantum Theory of Relaxation.- Appendixes.- References.

Recenzii

from a review of the First Edition:
`[The author's] clear pedagogic style makes this a very useful reference work for readers who want to learn density matrix theory. ... Highly recommended, particularly for graduate school physics libraries.'
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Notă biografică

Karl Blum is Professor ath the University of Münster, Germany.

Textul de pe ultima copertă

Written in a clear pedagogic style, this book deals with the application of density matrix theory to atomic and molecular physics. The aim is to precisely characterize sates by a vector and to construct general formulas and proofs of general theorems. The basic concepts and quantum mechanical fundamentals (reduced density matrices, entanglement, quantum correlations) are discussed in a comprehensive way. The discussion leads up to applications like coherence and orientation effects in atoms and molecules, decoherence and relaxation processes.
This third edition has been updated and extended throughout and contains a completely new chapter exploring nonseparability and entanglement in two-particle spin-1/2 systems. The text discusses recent studies in atomic and molecular reactions. A new chapter explores nonseparability and entanglement in two-particle spin-1/2 systems.

Caracteristici

Deals with the basics and application of density matrix theory to atomic and molecular physics Presents an elegant way to describe processes in atomic physics with a minimum amount of formulas Comprehensive introduction to the theory Includes advanced applications of the theory in atomic and molecular physics Includes supplementary material: sn.pub/extras

Descriere

Descriere de la o altă ediție sau format:
The basic concepts and quantum mechanical fundamentals (reduced density matrices, entanglement, quantum correlations) are discussed in a comprehensive way. The discussion leads up to applications like coherence and orientation effects in atoms and molecules, decoherence and relaxation processes.This third edition has been updated and extended throughout and contains a completely new chapter exploring nonseparability and entanglement in two-particle spin-1/2 systems. The text discusses recent studies in atomic and molecular reactions. A new chapter explores nonseparability and entanglement in two-particle spin-1/2 systems.