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Lattice-Based Cryptosystems: A Design Perspective

Autor Jiang Zhang, Zhenfeng Zhang
en Limba Engleză Hardback – 15 oct 2020
This book focuses on lattice-based cryptosystems, widely considered to be one of the most promising post-quantum cryptosystems and provides fundamental insights into how to construct provably secure cryptosystems from hard lattice problems. The concept of provable security is used to inform the choice of lattice tool for designing cryptosystems, including public-key encryption, identity-based encryption, attribute-based encryption, key change and digital signatures. Given its depth of coverage, the book especially appeals to graduate students and young researchers who plan to enter this research area.
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Specificații

ISBN-13: 9789811584268
ISBN-10: 9811584265
Pagini: 174
Ilustrații: XIII, 174 p. 301 illus.
Dimensiuni: 155 x 235 mm
Greutate: 0.45 kg
Ediția:1st ed. 2020
Editura: Springer Nature Singapore
Colecția Springer
Locul publicării:Singapore, Singapore

Cuprins

Introduction.- Lattices.- Public-key encryption.- Identity-based encryption.- Attribute-based encryption.- Key Exchanges.- Digital signatures.

Notă biografică

Jiang Zhang is an Associate Researcher at the State Key Laboratory of Cryptology, Beijing, China. His interests include post-quantum cryptography, multiparty computation and data privacy. In the area of post-quantum cryptography, he has proposed a set of lattice-based cryptosystems and presented them at leading security and cryptography conferences, including the three flagship events organized by the International Association for Cryptologic Research.
Zhenfeng Zhang is a Researcher at the Trusted Computing and Information Assurance Laboratory Institute of Software, Chinese Academy of Sciences. His research interests include trusted computing, applied cryptography and information security, areas in which he has published more than 60 papers in leading security journals.


Textul de pe ultima copertă

This book focuses on lattice-based cryptosystems, widely considered to be one of the most promising post-quantum cryptosystems and provides fundamental insights into how to construct provably secure cryptosystems from hard lattice problems. The concept of provable security is used to inform the choice of lattice tool for designing cryptosystems, including public-key encryption, identity-based encryption, attribute-based encryption, key change and digital signatures. Given its depth of coverage, the book especially appeals to graduate students and young researchers who plan to enter this research area.

Caracteristici

Equips readers to use basic lattice tools to design secure cryptosystems Offers step-by-step insights into how to achieve provable security Covers major lattice-based cryptosystems in a broad range of applications