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Emerging Applications of Number Theory
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Emerging Applications of Number Theory

Emerging Applications of Number Theory

Dennis A. Hejhal, Joel Friedman, Martin C. Gutzwiller, Andrew M. Odlyzko

688 pages, parution le 01/01/1999

Résumé

Most people tend to view number theory as the very paradigm of pure mathematics. With the advent of computers, however, number theory has been finding an increasing number of applications in practical settings, such as in cryptography, random number generation, coding theory, and even concert hall acoustics. Yet other applications are still emerging - providing number theorists with some major new areas of opportunity.

The 1996 IMA summer program on Emerging Applications of Number Theory was aimed at stimulating further work with some of these newest (and most attractive) applications. Concentration was on number theory's recent links with: (a) wave phenomena in quantum mechanics (more specifically, quantum chaos); and (b) graph theory (especially expander graphs and related spectral theory).

This volume contains the contributed papers from that meeting and will be of interest to anyone intrigued by novel applications of modern number-theoretical techniques.

Contents

Foreword
Preface

  • Trace formula for quantum integrable systems, lattice-point problem, and small divisors 1
  • Theta-lifts of Maass waveforms 39
  • The transfer operator approach to Selberg's zeta function and modular and Maass wave forms for PSL (2,Z) 73
  • Chaos and deviation from uniform distribution: eigenfunction computation; applied modular arithmetic 143
  • Logarithmic Sobolev techniques for random walks on graphs 175
  • Eigenvalue statistics in quantum ideal gases 187
  • Multifractal spectrum and Laplace spectrum 201
  • Number theory and atomic densities 205
  • Explicit formulas and oscillations 219
  • Energy fluctuation analysis in integrable billiards in hyperbolic geometry 269
  • On eigenfunctions of the Laplacian for Hecke triangle groups 291
  • Eigenvalue spacings for regular graphs 317
  • Classical limits of eigenfunctions for some completely integrable systems 329
  • Does a quantum particle know the time? 355
  • Level spacings for Cayley graphs 373
  • Eigenvalues of Ramanujan graphs 387
  • Theta sums, Eisenstein series, and the semiclassical dynamics of a precessing spin 405
  • Random walks on generalized Euclidean graphs 451
  • Two proofs of Ihara's theorem 469
  • Playing billiards with microwaves - quantum manifestations of classical chaos 479
  • Characters of the symmetric groups: formulas, estimates and applications 525
  • Number theory and formal languages 547
  • Expander graphs and amenable quotients 571
  • Ramanujan hypergraphs and Ramanujan geometries 583
  • Constructing error-correcting codes from expander graphs 591
  • Multipath zeta functions of graphs 601
  • Eigenvalues of the Laplacian for Bianchi groups 617
  • A survey of discrete trace formulas 643
List of Participants 683
Program Schedule 685
Afterword

Caractéristiques techniques

  PAPIER
Éditeur(s) Springer
Auteur(s) Dennis A. Hejhal, Joel Friedman, Martin C. Gutzwiller, Andrew M. Odlyzko
Parution 01/01/1999
Nb. de pages 688
Format 16 x 24
Couverture Relié
Poids 1089g
Intérieur Noir et Blanc
EAN13 9780387988245
ISBN13 978-0-387-98824-5

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