Public-key cryptography - PKC 2022 =...
International Workshop on Practice and Theory in Public Key Cryptography (2022 :)

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  • Public-key cryptography - PKC 2022 = 25th IACR International Conference on Practice and Theory of Public-Key Cryptography, virtual event, March 8-11, 2022 : proceedings.. Part II /
  • Record Type: Electronic resources : Monograph/item
    Title/Author: Public-key cryptography - PKC 2022/ edited by Goichiro Hanaoka, Junji Shikata, Yohei Watanabe.
    Reminder of title: 25th IACR International Conference on Practice and Theory of Public-Key Cryptography, virtual event, March 8-11, 2022 : proceedings.
    remainder title: PKC 2022
    other author: Hanaoka, Goichiro.
    corporate name: International Workshop on Practice and Theory in Public Key Cryptography
    Published: Cham :Springer International Publishing : : 2022.,
    Description: xiv, 530 p. :ill. (some col.), digital ;24 cm.
    [NT 15003449]: Key Exchange -- Post-quantum Asynchronous Deniable Key Exchange and the Signal Handshake -- Post-Quantum Anonymous One-Sided Authenticated Key Exchange without Random Oracles -- Theory -- Lockable Obfuscation from Circularly Insecure Fully Homomorphic Encryption -- Financially Backed Covert Security -- Lifting Standard Model Reductions to Common Setup Assumptions -- Encryption -- Efficient Lattice-Based Inner-Product Functional Encryption -- The Direction of Updatable Encryption Does Matter -- Leakage-Resilient IBE/ABE with Optimal Leakage Rates from Lattices -- Encapsulated Search Index : Public-Key, Sub-linear, Distributed, and Delegatable -- KDM Security for the Fujisaki-Okamoto Transformations in the QROM -- A New Security Notion for PKC in the Standard Model: Weaker, Simpler, and Still Realizing Secure Channels -- Signatures -- Lattice-based Signatures with Tight Adaptive Corruptions and More -- Count Me In! Extendablity for Threshold Ring Signatures -- A Note on the Post-Quantum Security of (Ring) Signatures -- Logarithmic-Size (Linkable) Threshold Ring Signatures in the Plain Model -- On Pairing-Free Blind Signature Schemes in the Algebraic Group Model -- Efficient Lattice-Based Blind Signatures via Gaussian One-Time Signatures.
    Contained By: Springer Nature eBook
    Subject: Public key cryptography - Congresses. -
    Online resource: https://doi.org/10.1007/978-3-030-97131-1
    ISBN: 9783030971311
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W9440267 電子資源 11.線上閱覽_V 電子書 EB QA76.9.A25 I57 2022 一般使用(Normal) On shelf 0
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