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Explore linear repairing codes and side channel attacks in cryptography, covering security issues, shading schemes, and practical applications through experiments and observations.
Explore rotational symmetry in FPGA-specific AES implementation, focusing on innovative approaches to enhance efficiency and side-channel protection in cryptographic designs.
Explore a novel fault attack technique on symmetric cryptography, focusing on its effectiveness and implications for secure implementations.
Explore thermal laser stimulation for key extraction on Xilinx Ultrascale FPGAs, examining vulnerabilities and potential security implications in hardware cryptography.
Explore automated differential fault analysis techniques for assembly code, enhancing understanding of cryptographic vulnerabilities and attack methodologies.
Explores composable masking schemes for cryptographic implementations, considering physical defaults and introducing the robust probing model to enhance security against side-channel attacks.
Explore advanced zero-knowledge proofs for composite statements, covering Sigma protocols, garbled circuits, and SNARK constructions. Learn about privacy-preserving credentials and RSA signatures.
Explore innovative techniques for efficient multiparty secure computation, focusing on minimizing public key operations in just two rounds of communication.
Explore a novel obfuscation scheme for pattern matching with wildcards, presented at Crypto 2018, offering insights into cryptographic techniques and their applications.
Explore the round complexity of oblivious transfer extension protocols, examining theoretical advancements and implications for secure multiparty computation.
Explore innovative cryptographic techniques combining Adaptive Garbled RAM and Laconic Oblivious Transfer, advancing secure computation and data privacy in modern cryptography.
Explore pseudorandom quantum states, their definitions, applications in quantum money, and related concepts like pseudorandom unitary operators in this cryptography research presentation.
Explore the complexity of compressing obfuscation, focusing on indistinguishability obfuscation, compression hierarchy, and statistically secure compressing obfuscation in cryptography.
Explore a novel approach to efficient multi-party computation with TinyKeys, focusing on protocol complexity, OT extension, and secure protocols for improved performance.
Explore non-malleable codes for partial functions, their applications, and construction methods. Learn about challenges, admissible function classes, and implementations in various models.
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