An Introduction to the Theory of Graph Spectra

An Introduction to the Theory of Graph Spectra

ISBN-10:
0521118395
ISBN-13:
9780521118392
Pub. Date:
10/15/2009
Publisher:
Cambridge University Press
ISBN-10:
0521118395
ISBN-13:
9780521118392
Pub. Date:
10/15/2009
Publisher:
Cambridge University Press
An Introduction to the Theory of Graph Spectra

An Introduction to the Theory of Graph Spectra

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Overview

This introductory text explores the theory of graph spectra: a topic with applications across a wide range of subjects, including computer science, quantum chemistry and electrical engineering. The spectra examined here are those of the adjacency matrix, the Seidel matrix, the Laplacian, the normalized Laplacian and the signless Laplacian of a finite simple graph. The underlying theme of the book is the relation between the eigenvalues and structure of a graph. Designed as an introductory text for graduate students, or anyone using the theory of graph spectra, this self-contained treatment assumes only a little knowledge of graph theory and linear algebra. The authors include many new developments in the field which arise as a result of rapidly expanding interest in the area. Exercises, spectral data and proofs of required results are also provided. The end-of-chapter notes serve as a practical guide to the extensive bibliography of over 500 items.

Product Details

ISBN-13: 9780521118392
Publisher: Cambridge University Press
Publication date: 10/15/2009
Series: London Mathematical Society Student Texts , #75
Pages: 378
Product dimensions: 6.10(w) x 9.00(h) x 1.00(d)

About the Author

Dragoš Cvetković is Professor in the Mathematical Institute at the Serbian Academy of Sciences and Arts, Belgrade.

Peter Rowlinson is Emeritus Professor of Mathematics in the Department of Computing Science and Mathematics at the University of Stirling.

Slobodan Simić is Full Research Professor in the Mathematical Institute at the Serbian Academy of Sciences and Arts, Belgrade.

Table of Contents

Preface; 1. Introduction; 2. Graph operations and modifications; 3. Spectrum and structure; 4. Characterizations by spectra; 5. Structure and one eigenvalue; 6. Spectral techniques; 7. Laplacians; 8. Additional topics; 9. Applications; Appendix; Bibliography; Index of symbols; Index.
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