A Classically Efficient Forgery of MPPK/DS Signatures

Author:

Maddison Laura,Nevins MonicaORCID

Funder

NSERC Canada

Publisher

Springer Science and Business Media LLC

Reference9 articles.

1. National Institute of Standards and Technology. Post-Quantum Cryptography: Digital signature schemes. standardization of additional digital signature schemes. https://csrc.nist.gov/Projects/pqc-dig-sig/standardization, (2023). Accessed: August 2023

2. Kuang, R., Perepechaenko, M., Barbeau, M.: A new quantum-safe multivariate polynomial public key digital signature algorithm. Scientific Reports (2022)

3. Kuang, R., Perepechaenko, M., Barbeau, M.: A new post-quantum multivariate polynomial public key encapsulation algorithm. Quantum Inf. Process. 21(10), 360 (2022)

4. Shor, P.: Polynomial-Time Algorithms for Prime Factorization and Discrete Logarithms on a Quantum Computer. SIAM J. Comput. 26(5), 1484–1509 (1997)

5. Guo, H.: An algebraic attack for forging signatures of MPPK/DS. Cryptology ePrint Archive, Paper 2023/453, (2023). https://eprint.iacr.org/2023/453

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