In this book the authors give the first necessary and sufficient conditions for the uniform convergence a.s. of random Fourier series on locally compact Abelian groups and on compact non-Abelian groups. They also obtain many related results. For example, whenever a random Fourier series converges uniformly a.s. it also satisfies the central limit theorem. The methods developed are used to study some questions in harmonic analysis that are not intrinsically random. For example, a new characterization of Sidon sets is derived.
The major results depend heavily on the Dudley-Fernique necessary and sufficient condition for the continuity of stationary Gaussian processes and on recent work on sums of independent Banach space valued random variables. It is noteworthy that the proofs for the Abelian case immediately extend to the non-Abelian case once the proper definition of random Fourier series is made. In doing this the authors obtain new results on sums of independent random matrices with elements in a Banach space. The final chapter of the book suggests several directions for further research.

eBook - PDF
Random Fourier Series with Applications to Harmonic Analysis
- 161 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
Random Fourier Series with Applications to Harmonic Analysis
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Information
Publisher
Princeton University PressYear
2016Print ISBN
9780691082929
9780691082899
eBook ISBN
9781400881536
Table of contents
- Cover
- Title
- Copyright
- CONTENTS
- CHAPTER I: INTRODUCTION
- CHAPTER II: PRELIMINARIES
- CHAPTER III: RANDOM FOURIER SERIES ON LOCALLY COMPACT ABELIAN GROUPS
- CHAPTER IV: THE CENTRAL LIMIT THEOREM AND RELATED QUESTIONS
- CHAPTER V: RANDOM FOURIER SERIES ON COMPACT NON-ABELIAN GROUPS
- CHAPTER VI: APPLICATIONS TO HARMONIC ANALYSIS
- CHAPTER VII: ADDITIONAL RESULTS AND COMMENTS
- REFERENCES
- INDEX OF TERMINOLOGY
- INDEX OF NOTATIONS
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Yes, you can access Random Fourier Series with Applications to Harmonic Analysis by Michael B. Marcus,Gilles Pisier in PDF and/or ePUB format, as well as other popular books in Mathematics & Number Theory. We have over 1.5 million books available in our catalogue for you to explore.