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Advances in Cryptology
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Table of Contents

Leakage.- Circular and Leakage Resilient Public-Key Encryption under Subgroup Indistinguishability.- Leakage-Resilient Pseudorandom Functions and Side-Channel Attacks on Feistel Networks.- Protecting Cryptographic Keys against Continual Leakage.- Securing Computation against Continuous Leakage.- Lattice.- An Efficient and Parallel Gaussian Sampler for Lattices.- Lattice Basis Delegation in Fixed Dimension and Shorter-Ciphertext Hierarchical IBE.- Homomorphic Encryption.- Toward Basing Fully Homomorphic Encryption on Worst-Case Hardness.- Additively Homomorphic Encryption with d-Operand Multiplications.- i-Hop Homomorphic Encryption and Rerandomizable Yao Circuits.- Theory and Applications.- Interactive Locking, Zero-Knowledge PCPs, and Unconditional Cryptography.- Fully Secure Functional Encryption with General Relations from the Decisional Linear Assumption.- Structure-Preserving Signatures and Commitments to Group Elements.- Efficient Indifferentiable Hashing into Ordinary Elliptic Curves.- Key Exchange, OAEP/RSA, CCA.- Credential Authenticated Identification and Key Exchange.- Password-Authenticated Session-Key Generation on the Internet in the Plain Model.- Instantiability of RSA-OAEP under Chosen-Plaintext Attack.- Efficient Chosen-Ciphertext Security via Extractable Hash Proofs.- Attacks.- Factorization of a 768-Bit RSA Modulus.- Correcting Errors in RSA Private Keys.- Improved Differential Attacks for ECHO and Grøstl.- A Practical-Time Related-Key Attack on the KASUMI Cryptosystem Used in GSM and 3G Telephony.- Composition.- Universally Composable Incoercibility.- Concurrent Non-Malleable Zero Knowledge Proofs.- Equivalence of Uniform Key Agreement and Composition Insecurity.- Computation Delegation and Obfuscation.- Non-interactive Verifiable Computing:Outsourcing Computation to Untrusted Workers.- Improved Delegation of Computation Using Fully Homomorphic Encryption.- Oblivious RAM Revisited.- On Strong Simulation and Composable Point Obfuscation.- Multiparty Computation.- Protocols for Multiparty Coin Toss with Dishonest Majority.- Multiparty Computation for Dishonest Majority: From Passive to Active Security at Low Cost.- Secure Multiparty Computation with Minimal Interaction.- A Zero-One Law for Cryptographic Complexity with Respect to Computational UC Security.- Pseudorandomness.- On Generalized Feistel Networks.- Cryptographic Extraction and Key Derivation: The HKDF Scheme.- Time Space Tradeoffs for Attacks against One-Way Functions and PRGs.- Pseudorandom Functions and Permutations Provably Secure against Related-Key Attacks.- Quantum.- Secure Two-Party Quantum Evaluation of Unitaries against Specious Adversaries.- On the Efficiency of Classical and Quantum Oblivious Transfer Reductions.- Sampling in a Quantum Population, and Applications.

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