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Fractional Dynamics on Lattices and Networks

T Michelitsch (Autor)

Software / Digital Media
336 Seiten
2019
Wiley-Blackwell (Hersteller)
978-1-119-60816-5 (ISBN)
167,91 inkl. MwSt
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This book analyzes stochastic processes on networks and regular structures such as lattices by employing the Markovian random walk approach.

Part 1 is devoted to the study of local and non-local random walks. It shows how non-local random walk strategies can be defined by functions of the Laplacian matrix that maintain the stochasticity of the transition probabilities. A major result is that only two types of functions are admissible: type (i) functions generate asymptotically local walks with the emergence of Brownian motion, whereas type (ii) functions generate asymptotically scale-free non-local "fractional" walks with the emergence of Levy flights.

In Part 2, fractional dynamics and Levy flight behavior are analyzed thoroughly, and a generalization of Polya's classical recurrence theorem is developed for fractional walks. The authors analyze primary fractional walk characteristics such as the mean occupation time, the mean first passage time, the fractal scaling of the set of distinct nodes visited, etc. The results show the improved search capacities of fractional dynamics on networks.

Thomas Michelitsch is a CNRS Senior Research Scientist at the Institut Jean le Rond d'Alembert, Sorbonne University, France. Alejandro Perez Riascos is a Researcher and Associate Professor at the Institute of Physics at the Universidad Nacional Autonoma de Mexico. Bernard Collet is Emeritus Professor at the Institut Jean le Rond d'Alembert, Sorbonne University, France. Andrzej Nowakowski is a Lecturer at the University of Sheffield, UK. Franck Nicolleau is a Senior Lecturer at the University of Sheffield, UK, and Head of the Sheffield Fluid Mechanics Group.

Erscheint lt. Verlag 8.4.2019
Verlagsort Hoboken
Sprache englisch
Maße 150 x 250 mm
Gewicht 666 g
Themenwelt Informatik Weitere Themen CAD-Programme
ISBN-10 1-119-60816-3 / 1119608163
ISBN-13 978-1-119-60816-5 / 9781119608165
Zustand Neuware
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