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  1. Quantum attacks against iterated block ciphers
    2014/10/06 by Marc Kaplan, Kaplan, Marc · 1 citation
    Computer Science · Mathematics · Physics and Astronomy · #Algorithm #Block cipher #Collision attack #Computer science #Corollary #Cryptographic hash function #Cryptography #Cryptography and Security (cs.CR) #Discrete mathematics #FOS: Computer and information sciences #FOS: Physical sciences #Iterated function #Mathematics #Physics #Quantum #Quantum Computing Algorithms and Architecture #Quantum Information and Cryptography #Quantum Physics (quant-ph) #Quantum algorithm #Quantum mechanics #Quantum-Dot Cellular Automata #Theoretical computer science #cs.CR #quant-ph
  2. Speeding Up the Wide-Pipe: Secure and Fast Hashing
    2010/01/01 by Mridul Nandi, Souradyuti Paul · 2 citations
    Computer Science · Mathematics · #Algorithm #Chaos-based Image/Signal Encryption #Coding theory and cryptography #Collision attack #Collision resistance #Compression (physics) #Computer science #Computer security #Conjecture #Cryptographic Implementations and Security #Cryptographic hash function #Discrete mathematics #Function (biology) #Hash function #Mathematics #Mode (computer interface) #Oracle #Perfect hash function #Physics #Random oracle
  3. MD5 Is Weaker Than Weak: Attacks on Concatenated Combiners
    2009/01/01 by Florian Mendel, Christian Rechberger, Martin Schläffer · 1 citation
    Computer Science · #Algorithm #Chaos-based Image/Signal Encryption #Coding theory and cryptography #Collision #Collision attack #Collision resistance #Computer science #Computer security #Cryptanalysis #Cryptographic Implementations and Security #Cryptographic hash function #Cryptography #Double hashing #Function (biology) #Hash function #MD5 #Perfect hash function #SHA-2 #Theoretical computer science
  4. On the Strength of the Concatenated Hash Combiner When All the Hash Functions Are Weak
    2008/08/12 by Jonathan J. Hoch, Adi Shamir · 1 citation
    Computer Science · Mathematics · #Algorithm #Chaos-based Image/Signal Encryption #Coding theory and cryptography #Collision attack #Computer network #Computer science #Computer security #Cryptographic Implementations and Security #Cryptographic hash function #Double hashing #Encryption #Hash function #Iterated function #Mathematics #Oracle #Programming language #Public-key cryptography #Random oracle #SHA-2 #Theoretical computer science
  5. How easy is collision search? Application to DES
    2007/11/15 by Jean-Jacques Quisquater, Jean-Paul Delescaille · 1 citation
    Computer Science · #Algorithm #Chaos-based Image/Signal Encryption #Coding theory and cryptography #Collision #Collision attack #Computer science #Computer security #Cryptographic Implementations and Security #Cryptographic hash function #Cryptography #Key (lock) #Physics #Theoretical computer science
  6. Second Preimages on n-Bit Hash Functions for Much Less than 2 n Work
    2005/01/01 by John Kelsey, Bruce Schneier · 2 citations
    Computer Science · Mathematics · #Advanced Malware Detection Techniques #Algorithm #Block (permutation group theory) #Byte #Coding theory and cryptography #Collision #Collision attack #Combinatorics #Computer hardware #Computer science #Computer security #Cryptographic Implementations and Security #Cryptographic hash function #Discrete mathematics #Double hashing #Function (biology) #Hash function #Iterated function #MDC-2 #Mathematics #SHA-2 #Theoretical computer science
  7. Parallel Collision Search with Cryptanalytic Applications
    1999/01/01 by Paul C. van Oorschot, Michael J. Wiener · 2 citations
    Computer Science · Mathematics · #Algorithm #Arithmetic #Coding theory and cryptography #Collision attack #Computer science #Computer security #Cryptographic Implementations and Security #Cryptographic hash function #Cryptography #Cryptography and Data Security #Cryptosystem #Discrete logarithm #Double hashing #Encryption #Hash function #Mathematics #Plaintext #Public-key cryptography #Theoretical computer science