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Advances in Cryptology – EUROCRYPT 2013

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Table of Contents

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    Book Overview
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    Chapter 1 Candidate Multilinear Maps from Ideal Lattices
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    Chapter 2 Lossy Codes and a New Variant of the Learning-With-Errors Problem
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    Chapter 3 A Toolkit for Ring-LWE Cryptography
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    Chapter 4 Regularity of Lossy RSA on Subdomains and Its Applications
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    Chapter 5 Efficient Cryptosystems from 2 k -th Power Residue Symbols
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    Chapter 6 Deterministic Public-Key Encryption for Adaptively Chosen Plaintext Distributions
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    Chapter 7 How to Watermark Cryptographic Functions
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    Chapter 8 Security Evaluations beyond Computing Power
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    Chapter 9 Masking against Side-Channel Attacks: A Formal Security Proof
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    Chapter 10 Leakage-Resilient Cryptography from Minimal Assumptions
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    Chapter 11 Faster Index Calculus for the Medium Prime Case Application to 1175-bit and 1425-bit Finite Fields
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    Chapter 12 Fast Cryptography in Genus 2
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    Chapter 13 Graph-Theoretic Algorithms for the “Isomorphism of Polynomials” Problem
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    Chapter 14 Cryptanalysis of Full RIPEMD-128
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    Chapter 15 New Collision Attacks on SHA-1 Based on Optimal Joint Local-Collision Analysis
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    Chapter 16 Improving Local Collisions: New Attacks on Reduced SHA-256
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    Chapter 17 Dynamic Proofs of Retrievability via Oblivious RAM
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    Chapter 18 Message-Locked Encryption and Secure Deduplication
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    Chapter 19 Keccak
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    Chapter 20 Batch Fully Homomorphic Encryption over the Integers
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    Chapter 21 Practical Homomorphic MACs for Arithmetic Circuits
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    Chapter 22 Streaming Authenticated Data Structures
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    Chapter 23 Improved Key Recovery Attacks on Reduced-Round AES in the Single-Key Setting
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    Chapter 24 New Links between Differential and Linear Cryptanalysis
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    Chapter 25 Towards Key-Length Extension with Optimal Security: Cascade Encryption and Xor-cascade Encryption
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    Chapter 26 Ideal-Cipher (Ir)reducibility for Blockcipher-Based Hash Functions
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    Chapter 27 Limitations of the Meta-reduction Technique: The Case of Schnorr Signatures
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    Chapter 28 Practical Signatures from Standard Assumptions
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    Chapter 29 Locally Computable UOWHF with Linear Shrinkage
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    Chapter 30 Amplification of Chosen-Ciphertext Security
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    Chapter 31 Circular Chosen-Ciphertext Security with Compact Ciphertexts
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    Chapter 32 MiniLEGO: Efficient Secure Two-Party Computation from General Assumptions
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    Chapter 33 How to Hide Circuits in MPC an Efficient Framework for Private Function Evaluation
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    Chapter 34 Multi-party Computation of Polynomials and Branching Programs without Simultaneous Interaction
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    Chapter 35 Quantum-Secure Message Authentication Codes
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    Chapter 36 One-Sided Device-Independent QKD and Position-Based Cryptography from Monogamy Games
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    Chapter 37 Quadratic Span Programs and Succinct NIZKs without PCPs
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    Chapter 38 Zero-Knowledge Argument for Polynomial Evaluation with Application to Blacklists
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    Chapter 39 Resource-Restricted Indifferentiability
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    Chapter 40 On Concurrently Secure Computation in the Multiple Ideal Query Model
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    Chapter 41 Universally Composable Secure Computation with (Malicious) Physically Uncloneable Functions
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    Chapter 42 How to Garble RAM Programs?
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3 X users
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4 patents
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10 Wikipedia pages

Citations

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Title
Advances in Cryptology – EUROCRYPT 2013
Published by
Springer Berlin Heidelberg, May 2013
DOI 10.1007/978-3-642-38348-9
ISBNs
978-3-64-238347-2, 978-3-64-238348-9
Editors

Johansson, Thomas, Nguyen, Phong Q.

X Demographics

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 22 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 22 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 6 27%
Researcher 4 18%
Student > Master 4 18%
Unspecified 2 9%
Student > Bachelor 1 5%
Other 5 23%
Readers by discipline Count As %
Computer Science 15 68%
Mathematics 4 18%
Unspecified 2 9%
Physics and Astronomy 1 5%