Memory Functions, Projection Operators, and the Defect Technique von V. M. (Nitant) Kenkre | Some Tools of the Trade for the Condensed Matter Physicist | ISBN 9783030686673

Memory Functions, Projection Operators, and the Defect Technique

Some Tools of the Trade for the Condensed Matter Physicist

von V. M. (Nitant) Kenkre
Buchcover Memory Functions, Projection Operators, and the Defect Technique | V. M. (Nitant) Kenkre | EAN 9783030686673 | ISBN 3-030-68667-1 | ISBN 978-3-030-68667-3
“This book covers a wide range of topics related to phenomena exhibiting memory features, which can be derived from either dynamic to stochastic points of view. A mathematical treatment of such problems is supplied with an extensive set of physical examples. This makes the book very useful for physicists who need for building models of observable phenomena and understanding the respective mathematical apparatus.” (Eugene Postnikov, zbMATH 1517.82005, 2023)

Memory Functions, Projection Operators, and the Defect Technique

Some Tools of the Trade for the Condensed Matter Physicist

von V. M. (Nitant) Kenkre

This book provides a graduate-level introduction to three powerful and closely related techniques in condensed matter physics: memory functions, projection operators, and the defect technique. Memory functions appear in the formalism of the generalized master equations that express the time evolution of probabilities via equations non-local in time, projection operators allow the extraction of parts of quantities, such as the diagonal parts of density matrices in statistical mechanics, and the defect technique allows solution of transport equations in which the translational invariance is broken in small regions, such as when crystals are doped with impurities. These three methods combined form an immensely useful toolkit for investigations in such disparate areas of physics as excitation in molecular crystals, sensitized luminescence, charge transport, non-equilibrium statistical physics, vibrational relaxation, granular materials, NMR, and even theoretical ecology. This book explains the three techniques and their interrelated nature, along with plenty of illustrative examples. Graduate students beginning to embark on a research project in condensed matter physics will find this book to be a most fruitful source of theoretical training.