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Directed Polymers in Random Environments
Details
Analyzing the phase transition from diffusive to localized behavior in a model of directed polymers in a random environment, this volume places particular emphasis on the localization phenomenon. The main questionis: What does the path of a random walk look like if rewards and penalties are spatially randomly distributed?This model, which provides a simplified version of stretched elastic chains pinned by random impurities, has attracted much research activity, but it (and its relatives) still holds many secrets, especially in high dimensions. It has non-gaussian scaling limits and it belongs to the so-called KPZ universality class when the space is one-dimensional. Adopting a Gibbsian approach, using general and powerful tools from probability theory, the discrete model is studied in full generality. Presenting the state-of-the art from different perspectives, and written in the form of a first course on the subject, this monographis aimed at researchers in probability or statistical physics, but is also accessible to masters and Ph.D. students.
The first book to be devoted to this active field of research in probability and statistical physics Aimed at experienced researchers, but also accessible to masters and Ph.D. students Authored by a leading expert in the subject Includes supplementary material: sn.pub/extras
Inhalt
1 Introduction.- 2 Thermodynamics and Phase Transition.- 3 The martingale approach and the L 2 region.- 4 Lattice versus tree.- 5 Semimartingale approach and localization transition.- 6 Log-Gamma polymer model.- 7 Kardar-Parisi-Zhang equation and universality.- 8 Variational formulas.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783319504865
- Genre Maths
- Auflage 1st ed. 2017
- Sprache Englisch
- Lesemotiv Verstehen
- Anzahl Seiten 199
- Herausgeber Springer
- Größe H238mm x B155mm x T12mm
- Jahr 2017
- EAN 9783319504865
- Format Kartonierter Einband
- ISBN 978-3-319-50486-5
- Titel Directed Polymers in Random Environments
- Autor Francis Comets
- Untertitel École d'Été de Probabilités de Saint-Flour XLVI - 2016
- Gewicht 356g