The Selberg-Arthur Trace Formula: Based on Lectures by James Arthur

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Edition: 1

Series: Lecture Notes in Mathematics 1503

ISBN: 3540550216, 9783540550211, 0387550216

Size: 611 kB (625664 bytes)

Pages: 99/107

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Salahoddin Shokranian (auth.)3540550216, 9783540550211, 0387550216

This book based on lectures given by James Arthur discusses the trace formula of Selberg and Arthur. The emphasis is laid on Arthur’s trace formula for GL(r), with several examples in order to illustrate the basic concepts. The book will be useful and stimulating reading for graduate students in automorphic forms, analytic number theory, and non-commutative harmonic analysis, as well as researchers in these fields. Contents: I. Number Theory and Automorphic Representations.1.1. Some problems in classical number theory, 1.2. Modular forms and automorphic representations; II. Selberg’s Trace Formula 2.1. Historical Remarks, 2.2. Orbital integrals and Selberg’s trace formula, 2.3.Three examples, 2.4. A necessary condition, 2.5. Generalizations and applications; III. Kernel Functions and the Convergence Theorem, 3.1. Preliminaries on GL(r), 3.2. Combinatorics and reduction theory, 3.3. The convergence theorem; IV. The Ad lic Theory, 4.1. Basic facts; V. The Geometric Theory, 5.1. The JTO(f) and JT(f) distributions, 5.2. A geometric I-function, 5.3. The weight functions; VI. The Geometric Expansionof the Trace Formula, 6.1. Weighted orbital integrals, 6.2. The unipotent distribution; VII. The Spectral Theory, 7.1. A review of the Eisenstein series, 7.2. Cusp forms, truncation, the trace formula; VIII.The Invariant Trace Formula and its Applications, 8.1. The invariant trace formula for GL(r), 8.2. Applications and remarks

Table of contents :
Number theory and automorphic representations….Pages 1-10
Selberg’s trace formula….Pages 11-23
Kernel functions and the convergence theorem….Pages 24-40
The adèlic theory….Pages 41-44
The geometric theory….Pages 45-59
The geometric expansion of the trace formula….Pages 60-68
The spectral theory….Pages 69-78
The invariant trace formula and its applications….Pages 79-86

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