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Fractal Geometry and Stochastics IV (Hardcover, 2009 ed.): Christoph Bandt, Peter Moerters, Martina Zahle Fractal Geometry and Stochastics IV (Hardcover, 2009 ed.)
Christoph Bandt, Peter Moerters, Martina Zahle
R3,040 Discovery Miles 30 400 Ships in 10 - 15 working days

Over the last fifteen years fractal geometry has established itself as a substantial mathematical theory in its own right. The interplay between fractal geometry, analysis and stochastics has highly influenced recent developments in mathematical modeling of complicated structures. This process has been forced by problems in these areas related to applications in statistical physics, biomathematics and finance.

This book is a collection of survey articles covering many of the most recent developments, like Schramm-Loewner evolution, fractal scaling limits, exceptional sets for percolation, and heat kernels on fractals. The authors were the keynote speakers at the conference "Fractal Geometry and Stochastics IV" at Greifswald in September 2008.

Brownian Motion (Hardcover): Peter Moerters, Yuval Peres Brownian Motion (Hardcover)
Peter Moerters, Yuval Peres
R2,551 Discovery Miles 25 510 Ships in 10 - 15 working days

This eagerly awaited textbook covers everything the graduate student in probability wants to know about Brownian motion, as well as the latest research in the area. Starting with the construction of Brownian motion, the book then proceeds to sample path properties like continuity and nowhere differentiability. Notions of fractal dimension are introduced early and are used throughout the book to describe fine properties of Brownian paths. The relation of Brownian motion and random walk is explored from several viewpoints, including a development of the theory of Brownian local times from random walk embeddings. Stochastic integration is introduced as a tool and an accessible treatment of the potential theory of Brownian motion clears the path for an extensive treatment of intersections of Brownian paths. An investigation of exceptional points on the Brownian path and an appendix on SLE processes, by Oded Schramm and Wendelin Werner, lead directly to recent research themes.

Trends in Stochastic Analysis (Paperback, New): Jochen Blath, Peter Moerters, Michael Scheutzow Trends in Stochastic Analysis (Paperback, New)
Jochen Blath, Peter Moerters, Michael Scheutzow
R1,848 Discovery Miles 18 480 Ships in 10 - 15 working days

Presenting important trends in the field of stochastic analysis, this collection of thirteen articles provides an overview of recent developments and new results. Written by leading experts in the field, the articles cover a wide range of topics, ranging from an alternative set-up of rigorous probability to the sampling of conditioned diffusions. Applications in physics and biology are treated, with discussion of Feynman formulas, intermittency of Anderson models and genetic inference. A large number of the articles are topical surveys of probabilistic tools such as chaining techniques, and of research fields within stochastic analysis, including stochastic dynamics and multifractal analysis. Showcasing the diversity of research activities in the field, this book is essential reading for any student or researcher looking for a guide to modern trends in stochastic analysis and neighbouring fields.

Analysis and Stochastics of Growth Processes and Interface Models (Hardcover, New): Peter Moerters, Roger Moser, Mathew... Analysis and Stochastics of Growth Processes and Interface Models (Hardcover, New)
Peter Moerters, Roger Moser, Mathew Penrose, Hartmut Schwetlick, Johannes Zimmer
R2,576 Discovery Miles 25 760 Ships in 10 - 15 working days

This book is a collection of topical survey articles by leading researchers in the fields of applied analysis and probability theory, working on the mathematical description of growth phenomena. Particular emphasis is on the interplay of the two fields, with articles by analysts being accessible for researchers in probability, and vice versa. Mathematical methods discussed in the book comprise large deviation theory, lace expansion, harmonic multi-scale techniques and homogenisation of partial differential equations. Models based on the physics of individual particles are discussed alongside models based on the continuum description of large collections of particles, and the mathematical theories are used to describe physical phenomena such as droplet formation, Bose-Einstein condensation, Anderson localization, Ostwald ripening, or the formation of the early universe. The combination of articles from the two fields of analysis and probability is highly unusual and makes this book an important resource for researchers working in all areas close to the interface of these fields.

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