Quantum Thermodynamics: Emergence of Thermodynamic Behavior Within Composite Quantum Systems: Lecture Notes in Physics, cartea 784
Autor Jochen Gemmer, M. Michel, Günter Mahleren Limba Engleză Paperback – 14 mar 2012
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Paperback (1) | 577.32 lei 6-8 săpt. | |
Springer Berlin, Heidelberg – 14 mar 2012 | 577.32 lei 6-8 săpt. | |
Hardback (1) | 581.83 lei 6-8 săpt. | |
Springer Berlin, Heidelberg – 21 oct 2009 | 581.83 lei 6-8 săpt. |
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Specificații
ISBN-13: 9783642260995
ISBN-10: 3642260993
Pagini: 364
Ilustrații: XIV, 346 p. 88 illus.
Dimensiuni: 155 x 235 x 19 mm
Greutate: 0.51 kg
Ediția:Second Edition 2009
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Lecture Notes in Physics
Locul publicării:Berlin, Heidelberg, Germany
ISBN-10: 3642260993
Pagini: 364
Ilustrații: XIV, 346 p. 88 illus.
Dimensiuni: 155 x 235 x 19 mm
Greutate: 0.51 kg
Ediția:Second Edition 2009
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Lecture Notes in Physics
Locul publicării:Berlin, Heidelberg, Germany
Public țintă
ResearchCuprins
Background.- Basics of Quantum Mechanics.- Basics of Thermodynamics and Statistics.- Brief Review of Pertinent Concepts.- Equilibrium.- The Program for the Foundation of Thermodynamics.- Outline of the Present Approach.- Dynamics and Averages in Hilbert Space.- Typicality of Observables and States.- System and Environment.- The Typical Reduced State of the System.- Entanglement, Correlations and Local Entropy.- Generic Spectra of Large Systems.- Temperature.- Pressure and Adiabatic Processes.- Quantum Mechanical and Classical State Densities.- Equilibration in Model Systems.- Non-Equilibrium.- Brief Review of Relaxation and Transport Theories.- Projection Operator Techniques and Hilbert Space Average Method.- Finite Systems as Thermostats.- Projective Approach to Dynamical Transport.- Open System Approach to Transport.- Applications and Models.- Purity and Local Entropy in Product Hilbert Space.- Observability of Intensive Variables.- Observability of Extensive Variables.- Quantum Thermodynamic Processes.
Recenzii
From the reviews of the second edition:
“The aim of this textbook is to show how thermodynamic behavior can emerge for a given finite quantum system. … The book is written in a conceptually simple language, the focus being rather on the careful interpretation of the concepts at hand and their illustrations on model systems. … presents some applications to model systems, which allows one to illustrate more precisely previously introduced notions.” (Gabriel Stoltz, Mathematical Reviews, Issue 2011 f)
“This book introduces into the emergent field of the application of thermodynamics to describe phenomena arising with open quantum systems which consist in one or few particles. … A clue of this book is that ergodicity or mixing are replaced by a kind of typicality which is introduced and used as a basic concept to define equilibrium. … This is a heuristic approach and the results derived show how it works well.” (K.-E. Hellwig, Zentralblatt MATH, Vol. 1221, 2011)
“The aim of this textbook is to show how thermodynamic behavior can emerge for a given finite quantum system. … The book is written in a conceptually simple language, the focus being rather on the careful interpretation of the concepts at hand and their illustrations on model systems. … presents some applications to model systems, which allows one to illustrate more precisely previously introduced notions.” (Gabriel Stoltz, Mathematical Reviews, Issue 2011 f)
“This book introduces into the emergent field of the application of thermodynamics to describe phenomena arising with open quantum systems which consist in one or few particles. … A clue of this book is that ergodicity or mixing are replaced by a kind of typicality which is introduced and used as a basic concept to define equilibrium. … This is a heuristic approach and the results derived show how it works well.” (K.-E. Hellwig, Zentralblatt MATH, Vol. 1221, 2011)
Textul de pe ultima copertă
This introductory text treats thermodynamics as an incomplete description of quantum systems with many degrees of freedom. Its main goal is to show that the approach to equilibrium—with equilibrium characterized by maximum ignorance about the open system of interest—neither requires that many particles nor is the precise way of partitioning, relevant for the salient features of equilibrium and equilibration. Furthermore, the text depicts that it is indeed quantum effects that are at work in bringing about thermodynamic behavior of modest-sized open systems, thus making Von Neumann’s concept of entropy appear much more widely useful than sometimes feared, far beyond truly macroscopic systems in equilibrium.
This significantly revised and expanded second edition pays more attention to the growing number of applications, especially non-equilibrium phenomena and thermodynamic processes of the nano-domain. In addition, to improve readability and reduce unneeded technical details, a large portion of this book has been thoroughly rewritten.
From the reviews of the first edition:
This textbook provides a comprehensive approach, from a theoretical physics point of view, to the question of emergence of thermodynamic behavior in quantum systems... [Its] strength lies in the careful development of the relevant concepts, in particular the question how large a system needs to be to exhibit thermodynamic behavior is addressed. Luc Rey-Bellet (Amherst, MA), Mathematical Reviews 2007e
This significantly revised and expanded second edition pays more attention to the growing number of applications, especially non-equilibrium phenomena and thermodynamic processes of the nano-domain. In addition, to improve readability and reduce unneeded technical details, a large portion of this book has been thoroughly rewritten.
From the reviews of the first edition:
This textbook provides a comprehensive approach, from a theoretical physics point of view, to the question of emergence of thermodynamic behavior in quantum systems... [Its] strength lies in the careful development of the relevant concepts, in particular the question how large a system needs to be to exhibit thermodynamic behavior is addressed. Luc Rey-Bellet (Amherst, MA), Mathematical Reviews 2007e
Caracteristici
Includes supplementary material: sn.pub/extras