Guide To Pairing Based Cryptography


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Guide to Pairing-Based Cryptography


Guide to Pairing-Based Cryptography

Author: Nadia El Mrabet

language: en

Publisher: CRC Press

Release Date: 2017-01-06


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This book is devoted to efficient pairing computations and implementations, useful tools for cryptographers working on topics like identity-based cryptography and the simplification of existing protocols like signature schemes. As well as exploring the basic mathematical background of finite fields and elliptic curves, Guide to Pairing-Based Cryptography offers an overview of the most recent developments in optimizations for pairing implementation. Each chapter includes a presentation of the problem it discusses, the mathematical formulation, a discussion of implementation issues, solutions accompanied by code or pseudocode, several numerical results, and references to further reading and notes. Intended as a self-contained handbook, this book is an invaluable resource for computer scientists, applied mathematicians and security professionals interested in cryptography.

An Introduction to Mathematical Cryptography


An Introduction to Mathematical Cryptography

Author: Jeffrey Hoffstein

language: en

Publisher: Springer Science & Business Media

Release Date: 2008-12-15


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An Introduction to Mathematical Cryptography provides an introduction to public key cryptography and underlying mathematics that is required for the subject. Each of the eight chapters expands on a specific area of mathematical cryptography and provides an extensive list of exercises. It is a suitable text for advanced students in pure and applied mathematics and computer science, or the book may be used as a self-study. This book also provides a self-contained treatment of mathematical cryptography for the reader with limited mathematical background.

Elliptic Curves


Elliptic Curves

Author: Lawrence C. Washington

language: en

Publisher: CRC Press

Release Date: 2008-04-03


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Like its bestselling predecessor, Elliptic Curves: Number Theory and Cryptography, Second Edition develops the theory of elliptic curves to provide a basis for both number theoretic and cryptographic applications. With additional exercises, this edition offers more comprehensive coverage of the fundamental theory, techniques, and application