Description

Book Synopsis
The 4-volume sets LNCS 13507, 13508, 13509, 13510 constitutes the refereed proceedings of the 42nd Annual International Cryptology Conference, CRYPTO 2022, which was held in Santa Barbara, CA, USA, in August 2022. The total of 100 papers included in the proceedings was reviewed and selected from 455 submissions. The papers were organized in the following topical sections: Cryptanalysis; randomness; quantum cryptography; advanced encryption systems; secure messaging; lattice-based zero knowledge; lattice-based signatures; blockchain; coding theory; public key cryptography; signatures, idealized models; lower bounds; secure hash functions; post-quantum cryptography; symmetric cryptanalysis; secret sharing and secure multiparty computation; unique topics; symmetric key theory; zero knowledge; and threshold signatures.

Table of Contents
Cryptanalysis I.- Randomness.- Quantum Cryptography I.- Secure Multiparty Computation I.- Proof Systems.- Advanced Encryption Systems.- Secure Multiparty Computation II.- Secure Messaging.

Advances in Cryptology – CRYPTO 2022: 42nd Annual

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A Paperback / softback by Yevgeniy Dodis, Thomas Shrimpton

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    View other formats and editions of Advances in Cryptology – CRYPTO 2022: 42nd Annual by Yevgeniy Dodis

    Publisher: Springer International Publishing AG
    Publication Date: 12/10/2022
    ISBN13: 9783031158018, 978-3031158018
    ISBN10: 3031158016

    Description

    Book Synopsis
    The 4-volume sets LNCS 13507, 13508, 13509, 13510 constitutes the refereed proceedings of the 42nd Annual International Cryptology Conference, CRYPTO 2022, which was held in Santa Barbara, CA, USA, in August 2022. The total of 100 papers included in the proceedings was reviewed and selected from 455 submissions. The papers were organized in the following topical sections: Cryptanalysis; randomness; quantum cryptography; advanced encryption systems; secure messaging; lattice-based zero knowledge; lattice-based signatures; blockchain; coding theory; public key cryptography; signatures, idealized models; lower bounds; secure hash functions; post-quantum cryptography; symmetric cryptanalysis; secret sharing and secure multiparty computation; unique topics; symmetric key theory; zero knowledge; and threshold signatures.

    Table of Contents
    Cryptanalysis I.- Randomness.- Quantum Cryptography I.- Secure Multiparty Computation I.- Proof Systems.- Advanced Encryption Systems.- Secure Multiparty Computation II.- Secure Messaging.

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