Multiplicity-free Representations of Algebraic Groups

Multiplicity-free Representations of Algebraic Groups
Author :
Publisher : American Mathematical Society
Total Pages : 282
Release :
ISBN-10 : 9781470469054
ISBN-13 : 1470469057
Rating : 4/5 (54 Downloads)

Synopsis Multiplicity-free Representations of Algebraic Groups by : Martin W. Liebeck

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Representations of Algebraic Groups

Representations of Algebraic Groups
Author :
Publisher : American Mathematical Soc.
Total Pages : 594
Release :
ISBN-10 : 9780821843772
ISBN-13 : 082184377X
Rating : 4/5 (72 Downloads)

Synopsis Representations of Algebraic Groups by : Jens Carsten Jantzen

Gives an introduction to the general theory of representations of algebraic group schemes. This title deals with representation theory of reductive algebraic groups and includes topics such as the description of simple modules, vanishing theorems, Borel-Bott-Weil theorem and Weyl's character formula, and Schubert schemes and lne bundles on them.

Algebraic Groups

Algebraic Groups
Author :
Publisher : Cambridge University Press
Total Pages : 665
Release :
ISBN-10 : 9781107167483
ISBN-13 : 1107167485
Rating : 4/5 (83 Downloads)

Synopsis Algebraic Groups by : J. S. Milne

Comprehensive introduction to the theory of algebraic group schemes over fields, based on modern algebraic geometry, with few prerequisites.

Introduction to Representation Theory

Introduction to Representation Theory
Author :
Publisher : American Mathematical Soc.
Total Pages : 240
Release :
ISBN-10 : 9780821853511
ISBN-13 : 0821853511
Rating : 4/5 (11 Downloads)

Synopsis Introduction to Representation Theory by : Pavel I. Etingof

Very roughly speaking, representation theory studies symmetry in linear spaces. It is a beautiful mathematical subject which has many applications, ranging from number theory and combinatorics to geometry, probability theory, quantum mechanics, and quantum field theory. The goal of this book is to give a ``holistic'' introduction to representation theory, presenting it as a unified subject which studies representations of associative algebras and treating the representation theories of groups, Lie algebras, and quivers as special cases. Using this approach, the book covers a number of standard topics in the representation theories of these structures. Theoretical material in the book is supplemented by many problems and exercises which touch upon a lot of additional topics; the more difficult exercises are provided with hints. The book is designed as a textbook for advanced undergraduate and beginning graduate students. It should be accessible to students with a strong background in linear algebra and a basic knowledge of abstract algebra.

Reconstructing Orbit Closures from their Boundaries

Reconstructing Orbit Closures from their Boundaries
Author :
Publisher : American Mathematical Society
Total Pages : 154
Release :
ISBN-10 : 9781470469115
ISBN-13 : 1470469111
Rating : 4/5 (15 Downloads)

Synopsis Reconstructing Orbit Closures from their Boundaries by : Paul Apisa

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Homotopy Fibrations with a Section after Looping

Homotopy Fibrations with a Section after Looping
Author :
Publisher : American Mathematical Society
Total Pages : 114
Release :
ISBN-10 : 9781470470982
ISBN-13 : 1470470985
Rating : 4/5 (82 Downloads)

Synopsis Homotopy Fibrations with a Section after Looping by : Stephen Theriault

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Lie Groups: Structure, Actions, and Representations

Lie Groups: Structure, Actions, and Representations
Author :
Publisher : Springer Science & Business Media
Total Pages : 422
Release :
ISBN-10 : 9781461471936
ISBN-13 : 1461471931
Rating : 4/5 (36 Downloads)

Synopsis Lie Groups: Structure, Actions, and Representations by : Alan Huckleberry

Lie Groups: Structures, Actions, and Representations, In Honor of Joseph A. Wolf on the Occasion of his 75th Birthday consists of invited expository and research articles on new developments arising from Wolf's profound contributions to mathematics. Due to Professor Wolf’s broad interests, outstanding mathematicians and scholars in a wide spectrum of mathematical fields contributed to the volume. Algebraic, geometric, and analytic methods are employed. More precisely, finite groups and classical finite dimensional, as well as infinite-dimensional Lie groups, and algebras play a role. Actions on classical symmetric spaces, and on abstract homogeneous and representation spaces are discussed. Contributions in the area of representation theory involve numerous viewpoints, including that of algebraic groups and various analytic aspects of harmonic analysis. Contributors D. Akhiezer T. Oshima A. Andrada I. Pacharoni M. L. Barberis F. Ricci L. Barchini S. Rosenberg I. Dotti N. Shimeno M. Eastwood J. Tirao V. Fischer S. Treneer T. Kobayashi C.T.C. Wall A. Korányi D. Wallace B. Kostant K. Wiboonton P. Kostelec F. Xu K.-H. Neeb O. Yakimova G. Olafsson R. Zierau B. Ørsted

A Course in Finite Group Representation Theory

A Course in Finite Group Representation Theory
Author :
Publisher : Cambridge University Press
Total Pages : 339
Release :
ISBN-10 : 9781107162396
ISBN-13 : 1107162394
Rating : 4/5 (96 Downloads)

Synopsis A Course in Finite Group Representation Theory by : Peter Webb

This graduate-level text provides a thorough grounding in the representation theory of finite groups over fields and rings. The book provides a balanced and comprehensive account of the subject, detailing the methods needed to analyze representations that arise in many areas of mathematics. Key topics include the construction and use of character tables, the role of induction and restriction, projective and simple modules for group algebras, indecomposable representations, Brauer characters, and block theory. This classroom-tested text provides motivation through a large number of worked examples, with exercises at the end of each chapter that test the reader's knowledge, provide further examples and practice, and include results not proven in the text. Prerequisites include a graduate course in abstract algebra, and familiarity with the properties of groups, rings, field extensions, and linear algebra.