Quantum Mechanics and Its Emergent Macrophysics
Autor Geoffrey Sewellen Limba Engleză Hardback – sep 2002
Sewell begins by presenting the operator algebraic framework for the theory. He then undertakes a macrostatistical treatment of both equilibrium and nonequilibrium thermodynamics, which yields a major new characterization of a complete set of thermodynamic variables and a nonlinear generalization of the Onsager theory. The remainder of the book focuses on ordered and chaotic structures that arise in some key areas of condensed matter physics. This includes a general derivation of superconductive electrodynamics from the assumptions of off-diagonal long-range order, gauge covariance, and thermodynamic stability, which avoids the enormous complications of the microscopic treatments. Sewell also unveils a theoretical framework for phase transitions far from thermal equilibrium. Throughout, the mathematics is kept clear without sacrificing rigor. Representing a coherent approach to the vast problem of the emergence of macroscopic phenomena from quantum mechanics, this well-written book is addressed to physicists, mathematicians, and other scientists interested in quantum theory, statistical physics, thermodynamics, and general questions of order and chaos.
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Specificații
ISBN-13: 9780691058320
ISBN-10: 0691058326
Pagini: 304
Ilustrații: 9 line illus.
Dimensiuni: 163 x 243 x 23 mm
Greutate: 0.59 kg
Ediția:New.
Editura: Princeton University Press
Locul publicării:Princeton, United States
ISBN-10: 0691058326
Pagini: 304
Ilustrații: 9 line illus.
Dimensiuni: 163 x 243 x 23 mm
Greutate: 0.59 kg
Ediția:New.
Editura: Princeton University Press
Locul publicării:Princeton, United States
Notă biografică
Geoffrey Sewell is Professor of Mathematical Physics at Queen Mary, University of London. His previous book, Quantum Theory of Collective Phenomena, is a classic in the field.
Descriere
The quantum theory of macroscopic systems is an area of science that serves to relate the properties of physical objects to those of their constituent particles. This book provides an approach, based on a 'macrostatistical mechanics', which contrasts with the standard microscopic treatments of many-body problems.