Higher-order Differential Attack on Reduced-round SLIM
Author:
Affiliation:
1. Hokkaido University of Science
2. Tokyo University of Science
Publisher
Information Processing Society of Japan
Link
https://www.jstage.jst.go.jp/article/ipsjjip/32/0/32_352/_pdf
Reference21 articles.
1. [1] Aboushosha, B., Ramadan, R.A., Dwivedi, A.D., El-Sayed, A. and Dessouky, M.M.: SLIM A Lightweight Block Cipher for Internet of Health Things, IEEE Access, Vol.8, pp.203747-203757 (2020).
2. [2] Biham, E. and Shamir, A.: Differential Cryptanalysis of the Data Encryption Standard, pp.79-88, Springer New York (1993).
3. [3] Matsui, M.: Linear Cryptanalysis Method for DES Cipher, Proc. Workshop on the Theory and Application of Cryptographic Techniques, EUROCRYPT '93, Vol.765 of LNCS, pp.386-397 (1993).
4. [4] Chan, Y.Y., Khor, C., Khoo, B.T., Teh, J.S., Teng, W.J. and Jamil, N.: On the resistance of new lightweight block ciphers against differential cryptanalysis, Heliyon, Vol.9, No.4, e15257 (2023).
5. [5] Lai, X.: Higher Order Derivatives and Differential Cryptanalysis, Proc. Communications and Cryptography, pp.227-233 (1994).
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1. Bit‐Based Evaluation of Lightweight Block Ciphers SLIM, LBC‐IoT, and SLA by Mixed Integer Linear Programming;IET Information Security;2024-01
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