9780691081847-0691081840-Scattering Theory for Automorphic Functions. (AM-87), Volume 87 (Annals of Mathematics Studies, 87)

Scattering Theory for Automorphic Functions. (AM-87), Volume 87 (Annals of Mathematics Studies, 87)

ISBN-13: 9780691081847
ISBN-10: 0691081840
Author: Peter D. Lax, Ralph S. Phillips
Publication date: 1977
Publisher: Princeton University Press
Format: Paperback 312 pages
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Book details

ISBN-13: 9780691081847
ISBN-10: 0691081840
Author: Peter D. Lax, Ralph S. Phillips
Publication date: 1977
Publisher: Princeton University Press
Format: Paperback 312 pages

Summary

Scattering Theory for Automorphic Functions. (AM-87), Volume 87 (Annals of Mathematics Studies, 87) (ISBN-13: 9780691081847 and ISBN-10: 0691081840), written by authors Peter D. Lax, Ralph S. Phillips, was published by Princeton University Press in 1977. With an overall rating of 3.6 stars, it's a notable title among other books. You can easily purchase or rent Scattering Theory for Automorphic Functions. (AM-87), Volume 87 (Annals of Mathematics Studies, 87) (Paperback) from BooksRun, along with many other new and used books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.35.

Description

The application by Fadeev and Pavlov of the Lax-Phillips scattering theory to the automorphic wave equation led Professors Lax and Phillips to reexamine this development within the framework of their theory. This volume sets forth the results of that work in the form of new or more straightforward treatments of the spectral theory of the Laplace-Beltrami operator over fundamental domains of finite area; the meromorphic character over the whole complex plane of the Eisenstein series; and the Selberg trace formula.



CONTENTS: 1. Introduction. 2. An abstract scattering theory. 3. A modified theory for second order equations with an indefinite energy form. 4. The Laplace-Beltrami operator for the modular group. 5. The automorphic wave equation. 6. Incoming and outgoing subspaces for the automorphic wave equations. 7. The scattering matrix for the automorphic wave equation. 8. The general case. 9. The Selberg trace formula.

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