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Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Wipf, Andreas
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Wipf, Andreas:

Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Taschenbuch

2012, ISBN: 9783642331046

Springer, Taschenbuch, Auflage: 2013, 408 Seiten, Publiziert: 2012-10-29T00:00:01Z, Produktgruppe: Buch, 13.55 kg, Verkaufsrang: 2991837, Lexika, Hand- & Jahrbücher, Schule & Lernen, Kate… Mehr…

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Wipf, Andreas:

Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Taschenbuch

2012, ISBN: 9783642331046

Springer, Taschenbuch, Auflage: 2013, 408 Seiten, Publiziert: 2012-10-29T00:00:01Z, Produktgruppe: Buch, 13.55 kg, Verkaufsrang: 2991837, Lexika, Hand- & Jahrbücher, Schule & Lernen, Kate… Mehr…

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Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Wipf, Andreas
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Wipf, Andreas:
Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Taschenbuch

2012

ISBN: 9783642331046

Springer, Taschenbuch, Auflage: 2013, 408 Seiten, Publiziert: 2012-10-29T00:00:01Z, Produktgruppe: Buch, 6.15 kg, Verkaufsrang: 2676378, Lexika, Hand- & Jahrbücher, Schule & Lernen, Kateg… Mehr…

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Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Wipf, Andreas
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Wipf, Andreas:
Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864) - Taschenbuch

2012, ISBN: 9783642331046

Springer, Taschenbuch, Auflage: 2013, 408 Seiten, Publiziert: 2012-10-29T00:00:01Z, Produktgruppe: Buch, 13.55 kg, Lexika, Hand- & Jahrbücher, Schule & Lernen, Kategorien, Bücher, Astrono… Mehr…

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Wipf, Andreas:
Statistical Approach to Quantum Field Theory: An Introduction - Taschenbuch

2012, ISBN: 9783642331046

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Details zum Buch
Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864)

Over the past few decades the powerful methods of statistical physics and Euclidean quantum field theory have moved closer together, with common tools based on the use of path integrals. The interpretation of Euclidean field theories as particular systems of statistical physics has opened up new avenues for understanding strongly coupled quantum systems or quantum field theories at zero or finite temperatures.  
 
Accordingly, the first chapters of this book contain a self-contained introduction to path integrals in Euclidean quantum mechanics and statistical mechanics. The resulting high-dimensional integrals can be estimated with the help of Monte Carlo simulations based on Markov processes. The most commonly used algorithms are presented in detail so as to prepare the reader for the use of high-performance computers as an “experimental” tool for this burgeoning field of theoretical physics.
 
Several chapters are then devoted to an introduction to simple lattice field theories and a variety of spin systems with discrete and continuous spins, where the ubiquitous Ising model serves as an ideal guide for introducing the fascinating area of phase transitions.  As an alternative to the lattice formulation of quantum field theories, variants of the flexible renormalization group methods are discussed in detail.  Since, according to our present-day knowledge, all fundamental interactions in nature are described by gauge theories, the remaining chapters of the book deal with gauge theories without and with matter.
 
This text is based on course-tested notes for graduate students and, as such, its style is essentially pedagogical, requiring only some basics of mathematics, statistical physics, and quantum field theory. Yet it also contains some more sophisticated concepts which may be useful to researchers in the field.  Each chapter ends with a number of problems – guiding the reader to a deeper understanding of some of the material presented in the main text – and, in most cases, also features some listings of short, useful computer

Detailangaben zum Buch - Statistical Approach to Quantum Field Theory: An Introduction (Lecture Notes in Physics, Band 864)


EAN (ISBN-13): 9783642331046
ISBN (ISBN-10): 3642331041
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2012
Herausgeber: Springer
390 Seiten
Gewicht: 0,615 kg
Sprache: Englisch

Buch in der Datenbank seit 2009-12-06T02:48:51+01:00 (Vienna)
Detailseite zuletzt geändert am 2023-12-08T20:07:30+01:00 (Vienna)
ISBN/EAN: 9783642331046

ISBN - alternative Schreibweisen:
3-642-33104-1, 978-3-642-33104-6
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: wipf, andreas
Titel des Buches: you are here new approach, statistica, the field, introduction quantum field theory, lecture notes physics


Daten vom Verlag:

Autor/in: Andreas Wipf
Titel: Lecture Notes in Physics; Statistical Approach to Quantum Field Theory - An Introduction
Verlag: Springer; Springer Berlin
390 Seiten
Erscheinungsjahr: 2012-10-29
Berlin; Heidelberg; DE
Gedruckt / Hergestellt in Niederlande.
Gewicht: 6,146 kg
Sprache: Englisch
74,85 € (DE)
76,95 € (AT)
93,59 CHF (CH)
Not available, publisher indicates OP

BC; Book; Hardcover, Softcover / Physik, Astronomie/Allgemeines, Lexika; Mathematische Physik; Verstehen; Physik; Based on course-tested notes and pedagogical in style; Monte-Carlo methods and Markov processes; Path integrals in statistical physics; Phase Transitions and Ising models; Statistical quantum field theory textbook; B; Mathematical Methods in Physics; Complex Systems; Quantum Field Theories, String Theory; Elementary Particles, Quantum Field Theory; Numerical and Computational Physics, Simulation; Statistical Physics and Dynamical Systems; Mathematical Methods in Physics; Complex Systems; Elementary Particles, Quantum Field Theory; Theoretical, Mathematical and Computational Physics; Physics and Astronomy; Statistische Physik; Dynamik und Statik; Statistische Physik; Quantenphysik (Quantenmechanik und Quantenfeldtheorie); Mathematische Physik; Statistische Physik; EA; BC

Introduction.- Path Integrals in Quantum and Statistical Mechanics.- High-Dimensional Integrals.- Monte-Carlo Simulations in Quantum Mechanics.- Scalar Fields at Zero and Finite Temperature.- Classical Spin Models: An Introduction.- Mean Field Approximation.- Transfer Matrices, Correlation Inequalities and Roots of Partition Functions.- High-Temperature and Low-Temperature Expansions.- Peierls Argument and Duality Transformations.- Renormalization Group on the Lattice.- Functional Renormalization Group.- Lattice Gauge Theories.- Two-dimensional Lattice Gauge Theories and Group Integrals.- Fermions on a Lattice.- Index.

From the reviews:

“This book fills a gap in the literature on non-pertubative aspects of field theories and numerical methods such as Monte Carlo which are usually covered only separately in different books. Providing a new perspective on statistical and quantum field theories, this book is useful for graduate students and researchers within and outside the field. … This book will definitely be a must-read for people who are active in the fields of statistical and quantum field theories.” (Mohammad R. Rahimi Tabar, Mathematical Reviews, October, 2013)

Over the past few decades the powerful methods of statistical physics and Euclidean quantum field theory have moved closer together, with common tools based on the use of path integrals. The interpretation of Euclidean field theories as particular systems of statistical physics has opened up new avenues for understanding strongly coupled quantum systems or quantum field theories at zero or finite temperatures.

Accordingly, the first chapters of this book contain a self-contained introduction to path integrals in Euclidean quantum mechanics and statistical mechanics. The resulting high-dimensional integrals can be estimated with the help of Monte Carlo simulations based on Markov processes. The most commonly used algorithms are presented in detail so as to prepare the reader for the use of high-performance computers as an “experimental” tool for this burgeoning field of theoretical physics.

Several chapters are then devoted to an introduction to simple lattice field theories and a variety of spin systems with discrete and continuous spins, where the ubiquitous Ising model serves as an ideal guide for introducing the fascinating area of phase transitions. As an alternative to the lattice formulation of quantum field theories, variants of the flexible renormalization group methods are discussed in detail. Since, according to our present-day knowledge, all fundamental interactions in nature are described by gauge theories, the remaining chapters of the book deal with gauge theories without and with matter.

This text is based on course-tested notes for graduate students and, as such, its style is essentially pedagogical, requiring only some basics of mathematics, statistical physics, and quantum field theory. Yet it also contains some more sophisticated concepts which may be useful to researchers in the field. Each chapter ends with a number of problems – guiding the reader to a deeper understanding of some of the material presented in the main text – and, in most cases, also features some listings of short, useful computer programs.

Based on course-tested notes and pedagogical in style

Authored by a leading researcher in the field

Contains end-of-chapter problems and listings of short, useful computer programs



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