Modern Analysis of Automorphic Forms By Example: Volume 2

Modern Analysis of Automorphic Forms By Example: Volume 2

by Paul Garrett
Modern Analysis of Automorphic Forms By Example: Volume 2

Modern Analysis of Automorphic Forms By Example: Volume 2

by Paul Garrett

eBook

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Overview

This is Volume 2 of a two-volume book that provides a self-contained introduction to the theory and application of automorphic forms, using examples to illustrate several critical analytical concepts surrounding and supporting the theory of automorphic forms. The two-volume book treats three instances, starting with some small unimodular examples, followed by adelic GL2, and finally GLn. Volume 2 features critical results, which are proven carefully and in detail, including automorphic Green's functions, metrics and topologies on natural function spaces, unbounded operators, vector-valued integrals, vector-valued holomorphic functions, and asymptotics. Volume 1 features discrete decomposition of cuspforms, meromorphic continuation of Eisenstein series, spectral decomposition of pseudo-Eisenstein series, and automorphic Plancherel theorem. With numerous proofs and extensive examples, this classroom-tested introductory text is meant for a second-year or advanced graduate course in automorphic forms, and also as a resource for researchers working in automorphic forms, analytic number theory, and related fields.

Product Details

ISBN-13: 9781108669214
Publisher: Cambridge University Press
Publication date: 09/20/2018
Series: Cambridge Studies in Advanced Mathematics , #174
Sold by: Barnes & Noble
Format: eBook
File size: 82 MB
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About the Author

Paul Garrett is Professor of Mathematics at the University of Minnesota. His research focuses on analytical issues in the theory of automorphic forms. He has published numerous journal articles as well as five books.

Table of Contents

1. Unbounded operators on Hilbert spaces; 2. Discrete decomposition of pseudo-cuspforms; 3. Meromorphic continuation of Eisenstein series; 4. Global automorphic Sobolev spaces, Green's functions; 5. Examples – topologies on natural function spaces; 6. Vector-valued integrals; 7. Differentiable vector-valued functions; 8. Asymptotic expansions.
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