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Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics

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Release : 1901
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Kind : eBook
Book Rating : 730/5 ( reviews)

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Book Synopsis Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics by : Pires Antonio Sergio Teixeira

Download or read book Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics written by Pires Antonio Sergio Teixeira. This book was released on 1901. Available in PDF, EPUB and Kindle. Book excerpt:

A Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics

Download A Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics PDF Online Free

Author :
Release : 2019-03-21
Genre : Science
Kind : eBook
Book Rating : 744/5 ( reviews)

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Book Synopsis A Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics by : Antonio Sergio Teixeira Pires

Download or read book A Brief Introduction to Topology and Differential Geometry in Condensed Matter Physics written by Antonio Sergio Teixeira Pires. This book was released on 2019-03-21. Available in PDF, EPUB and Kindle. Book excerpt: In the last years there have been great advances in the applications of topology and differential geometry to problems in condensed matter physics. Concepts drawn from topology and geometry have become essential to the understanding of several phenomena in the area. Physicists have been creative in producing models for actual physical phenomena which realize mathematically exotic concepts and new phases have been discovered in condensed matter in which topology plays a leading role. An important classification paradigm is the concept of topological order, where the state characterizing a system does not break any symmetry, but it defines a topological phase in the sense that certain fundamental properties change only when the system passes through a quantum phase transition. The main purpose of this book is to provide a brief, self-contained introduction to some mathematical ideas and methods from differential geometry and topology, and to show a few applications in condensed matter. It conveys to physicists the basis for many mathematical concepts, avoiding the detailed formality of most textbooks.

Topology and Geometry for Physicists

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Release : 2013-08-16
Genre : Mathematics
Kind : eBook
Book Rating : 362/5 ( reviews)

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Book Synopsis Topology and Geometry for Physicists by : Charles Nash

Download or read book Topology and Geometry for Physicists written by Charles Nash. This book was released on 2013-08-16. Available in PDF, EPUB and Kindle. Book excerpt: Written by physicists for physics students, this text assumes no detailed background in topology or geometry. Topics include differential forms, homotopy, homology, cohomology, fiber bundles, connection and covariant derivatives, and Morse theory. 1983 edition.

Geometry, Topology and Physics

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Release : 2018-10-03
Genre : Mathematics
Kind : eBook
Book Rating : 948/5 ( reviews)

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Book Synopsis Geometry, Topology and Physics by : Mikio Nakahara

Download or read book Geometry, Topology and Physics written by Mikio Nakahara. This book was released on 2018-10-03. Available in PDF, EPUB and Kindle. Book excerpt: Differential geometry and topology have become essential tools for many theoretical physicists. In particular, they are indispensable in theoretical studies of condensed matter physics, gravity, and particle physics. Geometry, Topology and Physics, Second Edition introduces the ideas and techniques of differential geometry and topology at a level suitable for postgraduate students and researchers in these fields. The second edition of this popular and established text incorporates a number of changes designed to meet the needs of the reader and reflect the development of the subject. The book features a considerably expanded first chapter, reviewing aspects of path integral quantization and gauge theories. Chapter 2 introduces the mathematical concepts of maps, vector spaces, and topology. The following chapters focus on more elaborate concepts in geometry and topology and discuss the application of these concepts to liquid crystals, superfluid helium, general relativity, and bosonic string theory. Later chapters unify geometry and topology, exploring fiber bundles, characteristic classes, and index theorems. New to this second edition is the proof of the index theorem in terms of supersymmetric quantum mechanics. The final two chapters are devoted to the most fascinating applications of geometry and topology in contemporary physics, namely the study of anomalies in gauge field theories and the analysis of Polakov's bosonic string theory from the geometrical point of view. Geometry, Topology and Physics, Second Edition is an ideal introduction to differential geometry and topology for postgraduate students and researchers in theoretical and mathematical physics.

Many-body Physics, Topology And Geometry

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Release : 2015-06-15
Genre : Science
Kind : eBook
Book Rating : 18X/5 ( reviews)

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Book Synopsis Many-body Physics, Topology And Geometry by : Siddhartha Sen

Download or read book Many-body Physics, Topology And Geometry written by Siddhartha Sen. This book was released on 2015-06-15. Available in PDF, EPUB and Kindle. Book excerpt: The book explains concepts and ideas of mathematics and physics that are relevant for advanced students and researchers of condensed matter physics. With this aim, a brief intuitive introduction to many-body theory is given as a powerful qualitative tool for understanding complex systems. The important emergent concept of a quasiparticle is then introduced as a way to reduce a many-body problem to a single particle quantum problem. Examples of quasiparticles in graphene, superconductors, superfluids and in a topological insulator on a superconductor are discussed.The mathematical idea of self-adjoint extension, which allows short distance information to be included in an effective long distance theory through boundary conditions, is introduced through simple examples and then applied extensively to analyse and predict new physical consequences for graphene.The mathematical discipline of topology is introduced in an intuitive way and is then combined with the methods of differential geometry to show how the emergence of gapless states can be understood. Practical ways of carrying out topological calculations are described.

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