Fr. 56.50

Quantum Key Distribution - An Introduction with Exercises

English · Paperback / Softback

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Description

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This textbook introduces the non-specialist reader to the concepts of quantum key distribution and presents an overview of state-of-the-art quantum communication protocols and applications. The field of quantum cryptography has advanced rapidly in the previous years, not least because with the age of quantum computing drawing closer, traditional encryption methods are at risk.The textbook presents the necessary mathematical tools without assuming much background, making it accessible to readers without experience in quantum information theory. In particular, the topic of classical and quantum entropies is presented in great detail. Furthermore, the author discusses the different types of quantum key distribution protocols and explains several tools for proving the security of these protocols. In addition, a number of applications of quantum key distribution are discussed, demonstrating its value to state-of-the-art cryptography and communication.
This book leads the reader through the mathematical background with a variety of worked-out examples and exercises. It is primarily targeted at graduate students and advanced undergraduates in theoretical physics. The presented material is largely self-contained and only basic knowledge in quantum mechanics and linear algebra is required.

List of contents

Introduction.- Mathematical Tools.- Information and Entropies.- Quantum Key Distribution Protocols.- Security Analysis.- Device-Independent QKD.- Recent Developments in Practical QKD.

About the author

Ramona Wolf is a Postdoctoral Scholar in the Quantum Information Theory group at ETH Zurich, Switzerland, working on quantum cryptography. She has obtained her PhD in Physics at Leibniz University Hanover, Germany. She has gained a lot of teaching experience by being a tutor for several courses in theoretical physics and also teaching a full course on quantum key distribution. She has published a number of articles in peer-reviewed academic journals and supervised several Bachelor and Master projects.

Summary

This textbook introduces the non-specialist reader to the concepts of quantum key distribution and presents an overview of state-of-the-art quantum communication protocols and applications. The field of quantum cryptography has advanced rapidly in the previous years, not least because with the age of quantum computing drawing closer, traditional encryption methods are at risk.The textbook presents the necessary mathematical tools without assuming much background, making it accessible to readers without experience in quantum information theory. In particular, the topic of classical and quantum entropies is presented in great detail. Furthermore, the author discusses the different types of quantum key distribution protocols and explains several tools for proving the security of these protocols. In addition, a number of applications of quantum key distribution are discussed, demonstrating its value to state-of-the-art cryptography and communication.
This book leads the reader through the mathematical background with a variety of worked-out examples and exercises. It is primarily targeted at graduate students and advanced undergraduates in theoretical physics. The presented material is largely self-contained and only basic knowledge in quantum mechanics and linear algebra is required.

Product details

Authors Wolf, Ramona Wolf
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 04.09.2021
 
EAN 9783030739904
ISBN 978-3-0-3073990-4
No. of pages 229
Dimensions 156 mm x 15 mm x 233 mm
Illustrations XI, 229 p. 56 illus., 31 illus. in color.
Series Lecture Notes in Physics
Subjects Natural sciences, medicine, IT, technology > Physics, astronomy > Theoretical physics

B, algorithms and data structures, Systems and Data Security, Data and Information Security, Data Structures and Information Theory, Quantum Physics, Physics and Astronomy, Algorithms & data structures, Network Security, Computer security, Information theory, Quantum Communications and Cryptography, Quantum Information, Data structures (Computer science)

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