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Distance Expanding Random Mappings, Thermodynamical Formalism, Gibbs Measures and Fractal Geometry / by Volker Mayer, Mariusz Urbanski, Bartlomiej Skorulski.

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Math/Physics/Astronomy Library QA3 .L28 v.1-999 470,523,830,849:2nd ed. v.1000-1722,1762,1781,1799-2099,2100-2192-2218 2219-2223-2258,2260-2271,2273-2274-2277,2279-2281,2283-2289,2291,2293-2294,2296,2298-2299,2300-2311,2313-2366,2368-2379,2381-2382 2385,2388-2389
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Format:
Book
Author/Creator:
Mayer, Volker, author.
Urbański, Mariusz, author.
Skorulski, Bartlomiej, author.
Contributor:
SpringerLink (Online service)
Series:
Lecture Notes in Mathematics, 0075-8434 ; 2036.
Lecture Notes in Mathematics, 0075-8434 ; 2036
Language:
English
Subjects (All):
Differentiable dynamical systems.
Dynamical Systems and Ergodic Theory.
Local Subjects:
Dynamical Systems and Ergodic Theory.
Physical Description:
1 online resource (X, 112 pages 3 illustrations in color).
Contained In:
Springer eBooks
Place of Publication:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2011.
System Details:
text file PDF
Summary:
The theory of random dynamical systems originated from stochastic differential equations. It is intended to provide a framework and techniques to describe and analyze the evolution of dynamical systems when the input and output data are known only approximately, according to some probability distribution. The development of this field, in both the theory and applications, has gone in many directions. In this manuscript we introduce measurable expanding random dynamical systems, develop the thermodynamical formalism and establish, in particular, the exponential decay of correlations and analyticity of the expected pressure although the spectral gap property does not hold. This theory is then used to investigate fractal properties of conformal random systems. We prove a Bowen's formula and develop the multifractal formalism of the Gibbs states. Depending on the behavior of the Birkhoff sums of the pressure function we arrive at a natural classification of the systems into two classes: quasi-deterministic systems, which share many properties of deterministic ones; and essentially random systems, which are rather generic and never bi-Lipschitz equivalent to deterministic systems. We show that in the essentially random case the Hausdorff measure vanishes, which refutes a conjecture by Bogenschutz and Ochs. Lastly, we present applications of our results to various specific conformal random systems and positively answer a question posed by Bruck and Buger concerning the Hausdorff dimension of quadratic random Julia sets.
Contents:
1 Introduction
2 Expanding Random Maps
3 The RPF-theorem
4 Measurability, Pressure and Gibbs Condition
5 Fractal Structure of Conformal Expanding Random Repellers
6 Multifractal Analysis
7 Expanding in the Mean
8 Classical Expanding Random Systems
9 Real Analyticity of Pressure.
Other Format:
Printed edition:
ISBN:
9783642236501
Access Restriction:
Restricted for use by site license.

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