Renormalization Methods

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Renormalization Methods

Author : W. D. McComb
Publisher : Oxford University Press
Page : 349 pages
File Size : 44,7 Mb
Release : 2004
Category : Business & Economics
ISBN : 9780198506942

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Renormalization Methods by W. D. McComb Pdf

This text fills a gap between undergraduate and more advanced texts on quantum field theory. It covers a range of renormalization methods with a clear physical interpretation, proceeds to the epsilon-expansion and ends with the first-order corrections to critical exponents beyond mean-field theory.

Introduction to Renormalization Group Methods in Physics

Author : R. J. Creswick,H. A. Farach,C. P. Poole, Jr.
Publisher : Unknown
Page : 0 pages
File Size : 42,7 Mb
Release : 2016-06-24
Category : Renormalization (Physics)
ISBN : 0486793451

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Introduction to Renormalization Group Methods in Physics by R. J. Creswick,H. A. Farach,C. P. Poole, Jr. Pdf

This introduction to the renormalization group, an edited and corrected second edition, discusses examples from diverse areas of physics. Designed for a one-semester course for advanced graduate students, the treatment requires a solid background in classical mechanics, statistical mechanics, and quantum mechanics. The text begins with an examination of self-similarity and scale invariance, followed by chapters on the renormalization group approaches to chaos and percolation, renormalization group and critical phenomena, and an extensive treatment of the Ising model. Additional topics include mean field theory and the Gaussian fixed point, the spherical model and the 1/n expansion, the two-dimensional X-Y model and the Kosterlitz-Thouless transition, and other subjects. Each chapter is augmented by problems and references, and three helpful Appendixes supplement the text. AUTHOR: R. J. Creswick is Professor in the Department of Physics and Astronomy, University of South Carolina.

Introduction to a Renormalisation Group Method

Author : Roland Bauerschmidt,David C. Brydges,Gordon Slade
Publisher : Springer Nature
Page : 283 pages
File Size : 43,6 Mb
Release : 2019-10-16
Category : Science
ISBN : 9789813295933

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Introduction to a Renormalisation Group Method by Roland Bauerschmidt,David C. Brydges,Gordon Slade Pdf

This is a primer on a mathematically rigorous renormalisation group theory, presenting mathematical techniques fundamental to renormalisation group analysis such as Gaussian integration, perturbative renormalisation and the stable manifold theorem. It also provides an overview of fundamental models in statistical mechanics with critical behaviour, including the Ising and φ4 models and the self-avoiding walk. The book begins with critical behaviour and its basic discussion in statistical mechanics models, and subsequently explores perturbative and non-perturbative analysis in the renormalisation group. Lastly it discusses the relation of these topics to the self-avoiding walk and supersymmetry. Including exercises in each chapter to help readers deepen their understanding, it is a valuable resource for mathematicians and mathematical physicists wanting to learn renormalisation group theory.

Geometrical Formulation of Renormalization-Group Method as an Asymptotic Analysis

Author : Teiji Kunihiro,Yuta Kikuchi,Kyosuke Tsumura
Publisher : Springer Nature
Page : 493 pages
File Size : 48,5 Mb
Release : 2022-04-01
Category : Science
ISBN : 9789811681899

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Geometrical Formulation of Renormalization-Group Method as an Asymptotic Analysis by Teiji Kunihiro,Yuta Kikuchi,Kyosuke Tsumura Pdf

This book presents a comprehensive account of the renormalization-group (RG) method and its extension, the doublet scheme, in a geometrical point of view. It extract long timescale macroscopic/mesoscopic dynamics from microscopic equations in an intuitively understandable way rather than in a mathematically rigorous manner and introduces readers to a mathematically elementary, but useful and widely applicable technique for analyzing asymptotic solutions in mathematical models of nature. The book begins with the basic notion of the RG theory, including its connection with the separation of scales. Then it formulates the RG method as a construction method of envelopes of the naive perturbative solutions containing secular terms, and then demonstrates the formulation in various types of evolution equations. Lastly, it describes successful physical examples, such as stochastic and transport phenomena including second-order relativistic as well as nonrelativistic fluid dynamics with causality and transport phenomena in cold atoms, with extensive numerical expositions of transport coefficients and relaxation times. Requiring only an undergraduate-level understanding of physics and mathematics, the book clearly describes the notions and mathematical techniques with a wealth of examples. It is a unique and can be enlightening resource for readers who feel mystified by renormalization theory in quantum field theory.

Renormalization Methods

Author : William David McComb
Publisher : OUP Oxford
Page : 348 pages
File Size : 48,9 Mb
Release : 2003-12-12
Category : Science
ISBN : 9780191567230

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Renormalization Methods by William David McComb Pdf

This book is unique in occupying a gap between standard undergraduate texts and more advanced texts on quantum field theory. It covers a range of renormalization methods with a clear physical interpretation (and motivation), including mean-field theories and high-temperature and low-density expansions. It then proceeds by easy steps to the famous epsilon-expansion, ending up with the first-order corrections to critical exponents beyond mean-field theory. Nowadays there is widespread interest in applications of renormalization methods to various topics ranging over soft condensed matter, engineering dynamics, traffic queueing and fluctuations in the stock market. Hence macroscopic systems are also included, with particular emphasis on the archetypal problem of fluid turbulence. The book is also unique in making this material accessible to readers other than theoretical physicists, as it requires only the basic physics and mathematics which should be known to most scientists, engineers and mathematicians.

Renormalization Methods

Author : Annick Lesne
Publisher : Wiley
Page : 0 pages
File Size : 41,5 Mb
Release : 1998-05-08
Category : Mathematics
ISBN : 0471966894

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Renormalization Methods by Annick Lesne Pdf

Originally conceived some thirty years ago in the context ofquantum electrodynamics, renormalization methods have progressivelydeveloped into an indispensable analytical tool used in widelyvarying domains of physics and applied mathematics, such as * phase transitions and critical phenomena * dynamical systems and chaos * developed turbulence * fractal structures and complex systems * percolation * polymer physics * diffusion in disordered media * measure theory and stochastic processes. By explaining the fundamental principles of renormalization theorysuch as scale invariance and universality which lie behind all thetechnical variations, this book aims to guide the reader to a moreunified understanding of today s physics. The book is based on avery accessible main text, supplemented by several more specializedsections; it is intended for graduate students and for researcherswho are seeking an introduction to a new area of electrodynamics ora general overview of the physical phenomena to whichrenormalization methods are applied.

Renormalization Theory

Author : G.P Velo,A.S. Wightman
Publisher : Springer Science & Business Media
Page : 484 pages
File Size : 55,9 Mb
Release : 2012-12-06
Category : Science
ISBN : 9789401014908

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Renormalization Theory by G.P Velo,A.S. Wightman Pdf

The present volume collects lecture notes from the session of the International School of Mathematical Physics 'Ettore Majorana' on Renormalization Theory that took place in Erice (Sicily), August 17 to August 31, 1975. The School was a NATO Advanced Study Institute sponsored by the Italian Ministry of Public Education, the Italian Minis try of Scientific and Technological Research, and the Regional Sicilian Government. Renormalization theory has, by now, acquired forty years of history. The present volume assumes a general acquaintance with the elementary facts of the subject as they might appear in an introductory course in quantum field theory. For more recent significant developments it provides a systematic intro duction as well as a detailed discussion of the existing state of knowledge. In particular analytic and dimensional renorma lization, normal product technique, and the Bogoliubov-Shirkov Epstein-Glaser method are treated, with applications to physically important gauge theories. All the preceding deals with perturbative renormalization theory. In recent years there has been an interesting development of non-perturbative renormalization theory in models in space-times of two and three dimensions, with the use of the methods of constructive field theory. Despite the simplicity of these models, the results are of significance because they are exact and answer a number of questions of principle. There are parts of renormalization theory which are not well understood, for instance the renormalization theory of non-renormalizable interactions.

Non-perturbative Methods in Statistical Descriptions of Turbulence

Author : Jan Friedrich
Publisher : Springer Nature
Page : 173 pages
File Size : 49,9 Mb
Release : 2020-09-25
Category : Technology & Engineering
ISBN : 9783030519773

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Non-perturbative Methods in Statistical Descriptions of Turbulence by Jan Friedrich Pdf

This book provides a comprehensive overview of statistical descriptions of turbulent flows. Its main objectives are to point out why ordinary perturbative treatments of the Navier–Stokes equation have been rather futile, and to present recent advances in non-perturbative treatments, e.g., the instanton method and a stochastic interpretation of turbulent energy transfer. After a brief introduction to the basic equations of turbulent fluid motion, the book outlines a probabilistic treatment of the Navier–Stokes equation and chiefly focuses on the emergence of a multi-point hierarchy and the notion of the closure problem of turbulence. Furthermore, empirically observed multiscaling features and their impact on possible closure methods are discussed, and each is put into the context of its original field of use, e.g., the renormalization group method is addressed in relation to the theory of critical phenomena. The intended readership consists of physicists and engineers who want to get acquainted with the prevalent concepts and methods in this research area.

Renormalization

Author : John C. Collins
Publisher : Cambridge University Press
Page : 393 pages
File Size : 50,9 Mb
Release : 2023-07-31
Category : Science
ISBN : 9781009401760

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Renormalization by John C. Collins Pdf

Foundations Of Quantum Chromodynamics: An Introduction To Perturbative Methods In Gauge Theories (3rd Edition)

Author : Muta Taizo
Publisher : World Scientific Publishing Company
Page : 432 pages
File Size : 42,9 Mb
Release : 2009-09-30
Category : Science
ISBN : 9789813101333

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Foundations Of Quantum Chromodynamics: An Introduction To Perturbative Methods In Gauge Theories (3rd Edition) by Muta Taizo Pdf

This volume develops the techniques of perturbative QCD in great pedagogical detail starting with field theory. Aside from extensive treatments of the renormalization group technique, the operator product expansion formalism and their applications to short-distance reactions, this book provides a comprehensive introduction to gauge theories. Examples and exercises are provided to amplify the discussions on important topics. This is an ideal textbook on the subject of quantum chromodynamics and is essential for researchers and graduate students in high energy physics, nuclear physics and mathematical physics.

Renormalization

Author : Manfred Salmhofer
Publisher : Springer Science & Business Media
Page : 241 pages
File Size : 41,5 Mb
Release : 2013-03-14
Category : Science
ISBN : 9783662038734

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Renormalization by Manfred Salmhofer Pdf

This monograph is the first to present the recently discovered renormalization techniques for the Schrödinger and Dirac equations, providing a mathematically rigorous, yet simple and clear introduction to the subject. It develops field-theoretic techniques such as Feynman graph expansions and renormalization, taking pains to make all proofs as simple as possible by using generating function techniques throughout. Renormalization is performed by using an exact renormalization group differential equation, a technique that provides simple but complete proofs of the theorems.

Introduction to Renormalization Group Methods in Physics

Author : Richard J. Creswick,Horacio A. Farach,Charles P. Poole
Publisher : Wiley-Interscience
Page : 432 pages
File Size : 42,7 Mb
Release : 1992
Category : Science
ISBN : UOM:39076001138036

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Introduction to Renormalization Group Methods in Physics by Richard J. Creswick,Horacio A. Farach,Charles P. Poole Pdf

The renormalization group (RG) method has found applications in many areas of physics. The authors present simple RG treatments of such diverse problems as random walks, percolation, chaos and critical phenomena. Detailed introductory materials are presented in each area which makes it reasonably self–contained. The concepts of self–similarity and scale invariance are a common thread tying these problems together. Emphasis is placed on intuitive real–space RG calculations rather than formalism. The momentum–space RG is introduced and the 1/n and epsis expansions are discussed. A brief explanation of the field–theoretic approach to the RG serves as an introduction to more advanced techniques.

Multigrid Methods IV

Author : P.W. Hemker,P. Wesseling
Publisher : Birkhäuser
Page : 360 pages
File Size : 54,7 Mb
Release : 2012-12-06
Category : Mathematics
ISBN : 9783034885249

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Multigrid Methods IV by P.W. Hemker,P. Wesseling Pdf

This volume contains a selection from the papers presented at the Fourth European Multigrid Conference, held in Amsterdam, July 6-9,1993. There were 78 registered participants from 14 different countries, and 56 presentations were given. The preceding conferences in this series were held in Cologne (1981, 1985) and in Bonn (1990). Also at the other side of the Atlantic special multigrid conferences are held regularly, at intervals of two years, always in Copper Mountain, Colorado, US. The Sixth Copper Mountain Conference on Multigrid Methods took place in April, 1993. Circumstances prevented us from putting a larger time interval between the Copper and Amsterdam meetings. The next European meeting is planned in 1996, a year later than the next Copper Meeting. When the first multigrid conference was held in 1981 there was no doubt about the usefulness of a conference dedicated specially to multigrid, because multigrid was a new and relatively unexplored subject, still in a pioneering stage, and pursued by specialists. The past twenty years have shown a rapid growth in theoretical understanding, useful applications and widespread acceptance of multi grid in the applied disciplines. Hence, one might ask whether there is still a need today for conferences specially dedicated to multigrid. The general consensus is that the answer is affirmative. New issues have arisen that are best addressed or need also be addressed from a special multigrid point of view.

Real-Space Renormalization

Author : T.W. Burkhardt,J.M.J. van Leeuwen
Publisher : Springer Science & Business Media
Page : 226 pages
File Size : 55,9 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783642818257

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Real-Space Renormalization by T.W. Burkhardt,J.M.J. van Leeuwen Pdf

The renormalization-group approach is largely responsible for the considerable success which has been achieved in the last ten years in developing a complete quantitative theory of phase transitions. Before, there was a useful physical picture of phase transitions, but a general method for making accurate quantitative predictions was lacking. Existent theories, such as the mean-field theory of Landau, sometimes reproduce phase diagrams reliably but were known to fail qualitatively near critical points, where the critical behavior is particularly interesting be cause of its universal character. In the mid 1960's Widom found that the singularities in thermodynamic quanti ties were well described by homogeneous functions. Kadanoff extended the homogeneity hypothesis to correlation functions and linked it to the idea of scale invariance. In the early 1970's Wilson showed how Kadanoff's rescaling could be explicitly carried out near the fixed point of a flow in Hamiltonian space. He made the first practical renormalization-group calculation of the flow induced by the elimination of short-wave-length Fourier components of the order-parameter field. The univer sality of the critical behavior emerges in a natural way in this approach, with a different fixed point for each universality class. The discovery by Wilson and Fisher of a systematic expansion procedure in E for a system in d = 4 - E dimen sions was followed by a cascade of calculations of critical quantities as a function of d and of the order-parameter dimensionality n.

Field Theory, The Renormalization Group, And Critical Phenomena: Graphs To Computers (3rd Edition)

Author : Daniel J Amit,Victor Martin-mayor
Publisher : World Scientific Publishing Company
Page : 568 pages
File Size : 42,6 Mb
Release : 2005-06-21
Category : Science
ISBN : 9789813102071

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Field Theory, The Renormalization Group, And Critical Phenomena: Graphs To Computers (3rd Edition) by Daniel J Amit,Victor Martin-mayor Pdf

This volume links field theory methods and concepts from particle physics with those in critical phenomena and statistical mechanics, the development starting from the latter point of view. Rigor and lengthy proofs are trimmed by using the phenomenological framework of graphs, power counting, etc., and field theoretic methods with emphasis on renormalization group techniques. Non-perturbative methods and numerical simulations are introduced in this new edition. Abundant references to research literature complement this matter-of-fact approach. The book introduces quantum field theory to those already grounded in the concepts of statistical mechanics and advanced quantum theory, with sufficient exercises in each chapter for use as a textbook in a one-semester graduate course.The following new chapters are included:I. Real Space MethodsII. Finite Size ScalingIII. Monte Carlo Methods. Numerical Field Theory