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Lars Ramkilde Knudsen
BRISK: Dynamic Encryption Based Cipher for Long Term Security
Related-Key Impossible Boomerang Cryptanalysis on Lblock-S
Impossible Differential Cryptanalysis of Reduced Round Hight
Mixture Differential Cryptanalysis and Structural Truncated Differential Attacks on Round-Reduced
Secure Block Ciphers - Cryptanalysis and Design
1 Introduction
Joëlle ROUÉ Analyse De La Résistance Des Chiffrements Par
Block Ciphers - Analysis, Design and Applications
QUAD: Overview and Recent Developments
Impossible Differential Cryptanalysis of Reduced Round Hight
Analyse De La Résistance Des Chiffrements Par Blocs Aux Attaques Linéaires Et Différentielles Joëlle Roue
Cryptanalysis of AES-Based Hash Functions
Cryptographic Hash Functions
The Related-Key Security of Iterated Even–Mansour Ciphers
Cryptanalysis of Block Ciphers and Hash Functions John Erik Mathiassen
New Types of Cryptanalytic Attacks Using Related Keys Eli Biham' Computer Science Department Technion - Israel Institute of Technology Haifa 32000, Israel
Cryptographic Hash Functions
Boolean Polynomials, Bdds and CRHS Equations - Connecting the Dots with Cryptapath
Top View
Security Evaluation of MISTY Structure with SPN Round Function
Copyright by Gokhan Sayilar 2014 the Thesis Committee for Gokhan Sayilar Certifies That This Is the Approved Version of the Following Thesis
The Design and Analysis of Symmetric Cryptosystems
Provable Security Against a Differential Attack*
Cryptanalysis of Skipjack Reduced to 31 Rounds Using Impossible Differentials∗
Impossible Differential Cryptanalysis of SPN Ciphers
New Types of Cryptanalytic Attacks Using Related Keys
Interpolation Cryptanalysis of Unbalanced Feistel Networks with Low Degree Round Functions
Iterative Characteristics of DES and S”-DES
Methods of Symmetric Cryptanalysis
Cryptanalysis of Skipjack Reduced to 31 Rounds Using Impossible Differentials
Enhancing the Strength of Conventional Cryptosystems Basic Research in Computer Science
Dyp Ocheretnyi-2020.Pdf
Secure Block Ciphers - Cryptanalysis and Design
Recommendation to NIST for the AES