Lie Methods in Deformation Theory

Lie Methods in Deformation Theory
Title Lie Methods in Deformation Theory PDF eBook
Author Marco Manetti
Publisher Springer Nature
Pages 576
Release 2022-08-01
Genre Mathematics
ISBN 9811911851

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This book furnishes a comprehensive treatment of differential graded Lie algebras, L-infinity algebras, and their use in deformation theory. We believe it is the first textbook devoted to this subject, although the first chapters are also covered in other sources with a different perspective. Deformation theory is an important subject in algebra and algebraic geometry, with an origin that dates back to Kodaira, Spencer, Kuranishi, Gerstenhaber, and Grothendieck. In the last 30 years, a new approach, based on ideas from rational homotopy theory, has made it possible not only to solve long-standing open problems, but also to clarify the general theory and to relate apparently different features. This approach works over a field of characteristic 0, and the central role is played by the notions of differential graded Lie algebra, L-infinity algebra, and Maurer–Cartan equations. The book is written keeping in mind graduate students with a basic knowledge of homological algebra and complex algebraic geometry as utilized, for instance, in the book by K. Kodaira, Complex Manifolds and Deformation of Complex Structures. Although the main applications in this book concern deformation theory of complex manifolds, vector bundles, and holomorphic maps, the underlying algebraic theory also applies to a wider class of deformation problems, and it is a prerequisite for anyone interested in derived deformation theory. Researchers in algebra, algebraic geometry, algebraic topology, deformation theory, and noncommutative geometry are the major targets for the book.

Lie Methods in Deformation Theory

Lie Methods in Deformation Theory
Title Lie Methods in Deformation Theory PDF eBook
Author Marco Manetti
Publisher Springer
Pages 0
Release 2022-09-01
Genre Mathematics
ISBN 9789811911842

Download Lie Methods in Deformation Theory Book in PDF, Epub and Kindle

This book furnishes a comprehensive treatment of differential graded Lie algebras, L-infinity algebras, and their use in deformation theory. We believe it is the first textbook devoted to this subject, although the first chapters are also covered in other sources with a different perspective. Deformation theory is an important subject in algebra and algebraic geometry, with an origin that dates back to Kodaira, Spencer, Kuranishi, Gerstenhaber, and Grothendieck. In the last 30 years, a new approach, based on ideas from rational homotopy theory, has made it possible not only to solve long-standing open problems, but also to clarify the general theory and to relate apparently different features. This approach works over a field of characteristic 0, and the central role is played by the notions of differential graded Lie algebra, L-infinity algebra, and Maurer–Cartan equations. The book is written keeping in mind graduate students with a basic knowledge of homological algebra and complex algebraic geometry as utilized, for instance, in the book by K. Kodaira, Complex Manifolds and Deformation of Complex Structures. Although the main applications in this book concern deformation theory of complex manifolds, vector bundles, and holomorphic maps, the underlying algebraic theory also applies to a wider class of deformation problems, and it is a prerequisite for anyone interested in derived deformation theory. Researchers in algebra, algebraic geometry, algebraic topology, deformation theory, and noncommutative geometry are the major targets for the book.

Maurer–Cartan Methods in Deformation Theory

Maurer–Cartan Methods in Deformation Theory
Title Maurer–Cartan Methods in Deformation Theory PDF eBook
Author Vladimir Dotsenko
Publisher Cambridge University Press
Pages 188
Release 2023-08-31
Genre Mathematics
ISBN 1108967027

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Covering an exceptional range of topics, this text provides a unique overview of the Maurer—Cartan methods in algebra, geometry, topology, and mathematical physics. It offers a new conceptual treatment of the twisting procedure, guiding the reader through various versions with the help of plentiful motivating examples for graduate students as well as researchers. Topics covered include a novel approach to the twisting procedure for operads leading to Kontsevich graph homology and a description of the twisting procedure for (homotopy) associative algebras or (homotopy) Lie algebras using the biggest deformation gauge group ever considered. The book concludes with concise surveys of recent applications in areas including higher category theory and deformation theory.

Generalized Lie Theory in Mathematics, Physics and Beyond

Generalized Lie Theory in Mathematics, Physics and Beyond
Title Generalized Lie Theory in Mathematics, Physics and Beyond PDF eBook
Author Sergei D. Silvestrov
Publisher Springer Science & Business Media
Pages 308
Release 2008-11-18
Genre Mathematics
ISBN 3540853324

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This book explores the cutting edge of the fundamental role of generalizations of Lie theory and related non-commutative and non-associative structures in mathematics and physics.

Déformation, quantification, théorie de Lie

Déformation, quantification, théorie de Lie
Title Déformation, quantification, théorie de Lie PDF eBook
Author Alberto S. Cattaneo
Publisher Societe Mathematique de France
Pages 210
Release 2005
Genre Business & Economics
ISBN

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In 1997, M. Kontsevich proved that every Poisson manifold admits a formal quantization, canonical up to equivalence. In doing so he solved a longstanding problem in mathematical physics. Through his proof and his interpretation of a later proof given by Tamarkin, he also opened up new research avenues in Lie theory, quantum group theory, deformation theory and the study of operads ... and uncovered fascinating links of these topics with number theory, knot theory and the theory of motives. Without doubt, his work on deformation quantization will continue to influence these fields for many years to come. In the three parts of this volume, we will 1) present the main results of Kontsevich's 1997 preprint and sketch his interpretation of Tamarkin's approach, 2) show the relevance of Kontsevich's theorem for Lie theory and 3) explain the idea from topological string theory which inspired Kontsevich's proof. An appendix is devoted to the geometry of configuration spaces.

Representations of Compact Lie Groups

Representations of Compact Lie Groups
Title Representations of Compact Lie Groups PDF eBook
Author T. Bröcker
Publisher Springer Science & Business Media
Pages 323
Release 2013-03-14
Genre Mathematics
ISBN 3662129183

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This introduction to the representation theory of compact Lie groups follows Herman Weyl’s original approach. It discusses all aspects of finite-dimensional Lie theory, consistently emphasizing the groups themselves. Thus, the presentation is more geometric and analytic than algebraic. It is a useful reference and a source of explicit computations. Each section contains a range of exercises, and 24 figures help illustrate geometric concepts.

Deformation Theory of Discontinuous Groups

Deformation Theory of Discontinuous Groups
Title Deformation Theory of Discontinuous Groups PDF eBook
Author Ali Baklouti
Publisher Walter de Gruyter GmbH & Co KG
Pages 379
Release 2022-07-05
Genre Mathematics
ISBN 311076539X

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This book contains the latest developments of the theory of discontinuous groups acting on homogenous spaces, from basic concepts to a comprehensive exposition. It develops the newest approaches and methods in the deformation theory of topological modules and unitary representations and focuses on the geometry of discontinuous groups of solvable Lie groups and their compact extensions. It also presents proofs of recent results, computes fundamental examples, and serves as an introduction and reference for students and experienced researchers in Lie theory, discontinuous groups, and deformation (and moduli) spaces.