Lectures on Bochner-Riesz Means by Katherine Michelle Davis, Yang-Chun Chang | | 9780521312776 | Paperback | Barnes & Noble
Lectures on Bochner-Riesz Means

Lectures on Bochner-Riesz Means

by Katherine Michelle Davis, Yang-Chun Chang
     
 

ISBN-10: 0521312779

ISBN-13: 9780521312776

Pub. Date: 01/28/1987

Publisher: Cambridge University Press

This book is concerned with the modern theory of Fourier series. Treating developments since Zygmund's classic study, the authors begin with a thorough discussion of the classical one-dimensional theory from a modern perspective. The text then takes up the developments of the 1970s, beginning with Fefferman's famous disc counterexample. The culminating chapter

Overview

This book is concerned with the modern theory of Fourier series. Treating developments since Zygmund's classic study, the authors begin with a thorough discussion of the classical one-dimensional theory from a modern perspective. The text then takes up the developments of the 1970s, beginning with Fefferman's famous disc counterexample. The culminating chapter presents Cordoba's geometric theory of Kayeka maximal functions and multipliers. Research workers in the fields of Fourier analysis and harmonic analysis will find this a valuable account of these developments. Second year graduate students, who are familiar with Lebesgue theory and are acquainted with distributions, will be able to use this as a textbook which will bring them up to the exciting open questions in the field.

Product Details

ISBN-13:
9780521312776
Publisher:
Cambridge University Press
Publication date:
01/28/1987
Series:
London Mathematical Society Lecture Note Series, #114
Pages:
164
Product dimensions:
5.98(w) x 8.98(h) x 0.39(d)

Table of Contents

Introduction; Preliminaries; 1. Multiplier theory; 2. The Hilbert transform; 3. Good lambda and weighted norm inequalities; 4. Multipliers with singularities; 5. Singularities along curves; 6. Restriction theorems; 7. The multiplier theorem for the disc; 8. The Cordoba multiplier theorem; References; Index.

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