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Advances in Cryptology — EUROCRYPT 2003

Overview of attention for book
Advances in Cryptology — EUROCRYPT 2003
Springer, Berlin, Heidelberg

Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 Cryptanalysis of the EMD Mode of Operation
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    Chapter 2 On the Optimality of Linear, Differential, and Sequential Distinguishers
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    Chapter 3 A Toolbox for Cryptanalysis: Linear and Affine Equivalence Algorithms
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    Chapter 4 Two-Threshold Broadcast and Detectable Multi-party Computation
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    Chapter 5 On the Limitations of Universally Composable Two-Party Computation without Set-up Assumptions
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    Chapter 6 Fair Secure Two-Party Computation
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    Chapter 7 Facts and Myths of Enigma: Breaking Stereotypes
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    Chapter 8 Resettable Zero-Knowledge in the Weak Public-Key Model
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    Chapter 9 Simulatable Commitments and Efficient Concurrent Zero-Knowledge
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    Chapter 10 Simulation in Quasi-Polynomial Time, and Its Application to Protocol Composition
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    Chapter 11 Strengthening Zero-Knowledge Protocols Using Signatures
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    Chapter 12 Nearly One-Sided Tests and the Goldreich-Levin Predicate
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    Chapter 13 Efficient and Non-malleable Proofs of Plaintext Knowledge and Applications
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    Chapter 14 A Public Key Encryption Scheme Based on the Polynomial Reconstruction Problem
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    Chapter 15 A Simpler Construction of CCA2-Secure Public-Key Encryption under General Assumptions
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    Chapter 16 A Forward-Secure Public-Key Encryption Scheme
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    Chapter 17 Certificate-Based Encryption and the Certificate Revocation Problem
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    Chapter 18 CAPTCHA: Using Hard AI Problems for Security
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    Chapter 19 Concealment and Its Applications to Authenticated Encryption
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    Chapter 20 Predicting the Shrinking Generator with Fixed Connections
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    Chapter 21 Algebraic Attacks on Stream Ciphers with Linear Feedback
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    Chapter 22 Counting Points on Elliptic Curves over Finite Fields of Small Characteristic in Quasi Quadratic Time
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    Chapter 23 The GHS Attack Revisited
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    Chapter 24 Improved Algorithms for Efficient Arithmetic on Elliptic Curves Using Fast Endomorphisms
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    Chapter 25 A Signature Scheme as Secure as the Diffie-Hellman Problem
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    Chapter 26 Aggregate and Verifiably Encrypted Signatures from Bilinear Maps
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    Chapter 27 Hypercubic Lattice Reduction and Analysis of GGH and NTRU Signatures
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    Chapter 28 Why Provable Security Matters?
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    Chapter 29 On the Security of RDSA
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    Chapter 30 Cryptanalysis of the Public-Key Encryption Based on Braid Groups
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    Chapter 31 A Theoretical Treatment of Related-Key Attacks: RKA-PRPs, RKA-PRFs, and Applications
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    Chapter 32 Provably Secure Threshold Password-Authenticated Key Exchange
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    Chapter 33 A Framework for Password-Based Authenticated Key Exchange
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    Chapter 34 The Security of Many-Round Luby-Rackoff Pseudo-Random Permutations
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    Chapter 35 New Bounds in Secret-Key Agreement: The Gap between Formation and Secrecy Extraction
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    Chapter 36 Round Efficiency of Multi-party Computation with a Dishonest Majority
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    Chapter 37 Efficient Multi-party Computation over Rings
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    Chapter 38 Foundations of Group Signatures: Formal Definitions, Simplified Requirements, and a Construction Based on General Assumptions
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    Chapter 39 Extracting Group Signatures from Traitor Tracing Schemes
Attention for Chapter 11: Strengthening Zero-Knowledge Protocols Using Signatures
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Chapter title
Strengthening Zero-Knowledge Protocols Using Signatures
Chapter number 11
Book title
Advances in Cryptology — EUROCRYPT 2003
Published by
Springer, Berlin, Heidelberg, May 2003
DOI 10.1007/3-540-39200-9_11
Book ISBNs
978-3-54-014039-9, 978-3-54-039200-2
Authors

Juan A. Garay, Philip MacKenzie, Ke Yang

Timeline

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 44 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 44 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 15 34%
Student > Master 8 18%
Researcher 5 11%
Student > Postgraduate 4 9%
Professor 2 5%
Other 6 14%
Unknown 4 9%
Readers by discipline Count As %
Computer Science 31 70%
Mathematics 3 7%
Physics and Astronomy 2 5%
Social Sciences 1 2%
Engineering 1 2%
Other 1 2%
Unknown 5 11%