Understanding Kinetic Surface Roughening Using Local, Discrete, Nonequilibrium Growth Models

Understanding Kinetic Surface Roughening Using Local, Discrete, Nonequilibrium Growth Models
Title Understanding Kinetic Surface Roughening Using Local, Discrete, Nonequilibrium Growth Models PDF eBook
Author Patcha Punyindu
Publisher
Pages 426
Release 2000
Genre Molecular beam epitaxy
ISBN

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Non-equilibrium Surface Growth for Competitive Growth Models and Applications to Conservative Parallel Discrete Event Simulations

Non-equilibrium Surface Growth for Competitive Growth Models and Applications to Conservative Parallel Discrete Event Simulations
Title Non-equilibrium Surface Growth for Competitive Growth Models and Applications to Conservative Parallel Discrete Event Simulations PDF eBook
Author Poonam Santosh Verma
Publisher
Pages
Release 2007
Genre Computer algorithms
ISBN

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Non-equilibrium surface growth for competitive growth models in (1+1) dimensions, particularly mixing random deposition (RD) with correlated growth process which occur with probability p are studied. The composite mixtures are found to be in the universality class of the correlated growth process, and a nonuniversal exponent _ is identified in the scaling in p. The only effects of the RD admixture are dilations of the time and height scales which result in a slowdown of the dynamics of building up the correlations. The bulk morphology is taken into account and is reflected in the surface roughening, as well as the scaling behavior. It is found that the continuum equations and scaling laws for RD added, in particular, to Kardar-Parisi-Zhang (KPZ) processes are partly determined from the underlying bulk structures. Nonequilibrium surface growth analysis are also applied to a study of the static and dynamic load balancing for a conservative update algorithm for Parallel Discrete Event Simulations (PDES). This load balancing is governed by the KPZ equation. For uneven load distributions in conservative PDES simulations, the simulated (virtual) time horizon (VTH) per Processing Element (PE) and the simulated time horizon per volume element Nv are used to study the PEs progress in terms of utilization. The width of these time horizons relates to the desynchronization of the system of processors, and is related to the memory requirements of the PEs. The utilization increases when dynamic, rather than static, load balancing is performed.

Dissertation Abstracts International

Dissertation Abstracts International
Title Dissertation Abstracts International PDF eBook
Author
Publisher
Pages 850
Release 2001
Genre Dissertations, Academic
ISBN

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Introduction To Stochastic Processes And Nonequilibrium Statistical Physics, An (Revised Edition)

Introduction To Stochastic Processes And Nonequilibrium Statistical Physics, An (Revised Edition)
Title Introduction To Stochastic Processes And Nonequilibrium Statistical Physics, An (Revised Edition) PDF eBook
Author Horacio Sergio Wio
Publisher World Scientific Publishing Company
Pages 319
Release 2012-09-05
Genre Science
ISBN 9814434639

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This book aims to provide a compact and unified introduction to the most important aspects in the physics of non-equilibrium systems. It first introduces stochastic processes and some modern tools and concepts that have proved their usefulness to deal with non-equilibrium systems from a purely probabilistic angle. The aim is to show the important role played by fluctuations in far-from-equilibrium situations, where noise can promote order and organization, switching among non-equilibrium states, etc. The second part adopts a more historical perspective, retracing the first steps taken from the purely thermodynamic as well as from the kinetic points of view to depart (albeit slightly) from equilibrium. The third part revisits the path outlined in the first one, but now undertakes the mesoscopic description of extended systems, where new phenomena (patterns, long-range correlations, scaling far from equilibrium, etc.) are observed.This book is a revised and extended version of an earlier edition published in 1994. It includes topics of current research interest in far-from-equilibrium situations like noise-induced phenomena and free energy-like functionals, surface growth and roughening, etc. It can be used as an advanced textbook by graduate students in physics. It also covers topics of current interest in other disciplines and interdisciplinary approaches in engineering, biophysics, and economics, among others. The level of detail in the book is enough to capture the interest of the reader and facilitate the path to more learning by exploring the modern research literature provided. At the same time, the book is also complete enough to be self-contained for those readers who just need an overview of the subject.

American Doctoral Dissertations

American Doctoral Dissertations
Title American Doctoral Dissertations PDF eBook
Author
Publisher
Pages 816
Release 2000
Genre Dissertation abstracts
ISBN

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Physical Review

Physical Review
Title Physical Review PDF eBook
Author
Publisher
Pages 1736
Release 2000-11
Genre Fluids
ISBN

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Publishes papers that report results of research in statistical physics, plasmas, fluids, and related interdisciplinary topics. There are sections on (1) methods of statistical physics, (2) classical fluids, (3) liquid crystals, (4) diffusion-limited aggregation, and dendritic growth, (5) biological physics, (6) plasma physics, (7) physics of beams, (8) classical physics, including nonlinear media, and (9) computational physics.

Fractal Concepts in Surface Growth

Fractal Concepts in Surface Growth
Title Fractal Concepts in Surface Growth PDF eBook
Author A.- L. Barabási
Publisher Cambridge University Press
Pages 392
Release 1995-04-13
Genre Mathematics
ISBN 9780521483186

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This book brings together two of the most exciting and widely studied subjects in modern physics: namely fractals and surfaces. To the community interested in the study of surfaces and interfaces, it brings the concept of fractals. To the community interested in the exciting field of fractals and their application, it demonstrates how these concepts may be used in the study of surfaces. The authors cover, in simple terms, the various methods and theories developed over the past ten years to study surface growth. They describe how one can use fractal concepts successfully to describe and predict the morphology resulting from various growth processes. Consequently, this book will appeal to physicists working in condensed matter physics and statistical mechanics, with an interest in fractals and their application. The first chapter of this important new text is available on the Cambridge Worldwide Web server: http://www.cup.cam.ac.uk/onlinepubs/Textbooks/textbookstop.html