
While systems at equilibrium are treated in a unified manner through the partition function formalism, the statistical physics of out-of-equilibrium systems covers a large variety of situations that are often without apparent connection. This book proposes a unified perspective on the whole set of systems near equilibrium: it brings out the profound unity of the laws which govern them and gathers a large number of results usually fragmented in the literature. The reader will find in this book a pedagogical account of the fundamental results: physical origins of irreversibility, fluctuation-dissipation theorem, Boltzmann equation, linear response, Onsager relations, transport phenomena, Langevin and Fokker-Planck equations. The book's comprehensive organisation makes it valuable both as a textbook about irreversible phenomena and as a reference book for researchers.
This book investigates the fundamental principles governing systems near equilibrium to establish a unified framework for understanding linear irreversible processes. Author Noëlle Pottier utilizes her academic background to synthesize fragmented research into a cohesive pedagogical structure. By examining the physical origins of irreversibility and transport phenomena, the text provides a rigorous mathematical and conceptual foundation for students and researchers alike.
What You Will Find
Scope Limits
Experts and academics frequently cite this work as a highly organized and pedagogical resource for graduate-level physics students. Readers often note the density of the mathematical derivations, which makes it a reliable reference for researchers working in statistical mechanics.
Page Count:
491
Publication Date:
2009-01-01
Publisher:
OUP Oxford
ISBN-10:
0191574279
ISBN-13:
9780191574276
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