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This book collects lecture courses and seminars given at the Les Houches Summer School 2010 on "Quantum Theory: From Small to Large Scales". Fundamental quantum phenomena appear on all scales, from microscopic to macroscopic. Some of the pertinent questions include the onset of decoherence, the dynamics of collective modes, the influence of external randomness and the emergence of dissipative behaviour. Our understanding of such phenomena has been advanced by the study of model systems and by the derivation and analysis of effective dynamics for large systems and over long times. In this field, research in mathematical physics has regularly contributed results that were recognized as essential in the physics community. During the last few years, the key questions have been sharpened and progress on answering them has been particularly strong. This book reviews the state-of-the-art developments in this field and provides the necessary background for future studies. All chapters are written from a pedagogical perspective, making the book accessible to master and PhD students and researchers willing to enter this field.
This volume investigates the transition of quantum phenomena across varying physical scales, specifically addressing how microscopic quantum behavior manifests in macroscopic systems. The editors, representing a collective of established researchers in mathematical physics, compile lecture notes from the 2010 Les Houches Summer School to provide a rigorous framework for understanding decoherence, collective modes, and dissipative dynamics. The text synthesizes advanced mathematical models to explain the emergence of large-scale physical properties from fundamental quantum interactions.
What You Will Find
Scope Limits
Experts and researchers in the field recognize this collection as a high-level resource for graduate students and academics specializing in mathematical physics. Readers frequently note the technical density of the prose, which assumes a strong background in advanced mathematics and theoretical physics.
Page Count:
691
Publication Date:
2012-01-01
Publisher:
OUP Oxford
ISBN-10:
0191623768
ISBN-13:
9780191623769
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