Analysis of DeepBKZ reduction for finding short lattice vectors
Author:
Funder
JST CREST
JSPS KAKENHI
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Computer Science Applications
Link
https://link.springer.com/content/pdf/10.1007/s10623-020-00765-4.pdf
Reference34 articles.
1. Albrecht, M., Ducas, L., Herold, G., Kirshanova, E., Postlethwaite, E.W., Stevens, M.: The general sieve kernel and new records in lattice reduction. In: Advances in Cryptology—EUROCRYPT 2019. Lecture Notes in Computer Science, vol. 11477, pp. 717–746. Springer, Berline (2019)
2. Albrecht, M.R., Curtis, B.R., Deo, A., Davidson, A., Player, R., Postlethwaite, E.W., Virdia, F., Wunderer, T.: Estimate all the LWE, NTRU schemes! In: Security and Cryptography for Networks (SCN 2018). Lecture Notes in Computer Science, vol. 11035, pp. 351–367 (2018)
3. Aono, Y., Wang, Y., Hayashi, T., Takagi, T.: Improved progressive BKZ algorithms and their precise cost estimation by sharp simulator. In: Advances in Cryptology—EUROCRYPT 2016. Lecture Notes in Computer Science, vol. 9665, pp. 789–819. Springer, New York (2016). Progressive BKZ library is available from https://www2.nict.go.jp/security/pbkzcode/.
4. Bremner M.R.: Lattice Basis Reduction: An Introduction to the LLL Algorithm and Its Applications. CRC Press, Boca Raton (2011).
5. Chen, Y.: Réduction de réseau et sécurité concrete du chiffrement completement homomorphe. Ph.D. thesis, Paris 7 (2013)
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