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main.bbl
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39 lines (32 loc) · 1.46 KB
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\begin{thebibliography}{1}
\bibitem{efficient}
Craig Costello, Patrick Longa, and Michael Naehrig.
\newblock Efficient algorithms for supersingular isogeny diffie-hellman.
\newblock In {\em Annual International Cryptology Conference}, pages 572--601.
Springer, 2016.
\bibitem{jao2014towards}
Luca De~Feo, David Jao, and J{\'e}r{\^o}me Pl{\^u}t.
\newblock Towards quantum-resistant cryptosystems from supersingular elliptic
curve isogenies.
\newblock {\em Journal of Mathematical Cryptology}, 8(3):209--247, 2014.
\bibitem{jalali2017efficient}
Amir Jalali, Reza Azarderakhsh, and Mehran Mozaffari~Kermani.
\newblock Efficient implementation of supersingular isogeny-based
diffie-hellman key exchange on arm.
\newblock 2017.
\bibitem{undeniable}
David Jao and Vladimir Soukharev.
\newblock Isogeny-based quantum-resistant undeniable signatures.
\newblock In {\em International Workshop on Post-Quantum Cryptography}, pages
160--179. Springer, 2014.
\bibitem{blind}
M~Seshadri Srinath and Venkatachalam Chandrasekaran.
\newblock Isogeny-based quantum-resistant undeniable blind signature scheme.
\newblock {\em IACR Cryptology ePrint Archive}, 2016:148, 2016.
\bibitem{base}
Youngho Yoo, Reza Azarderakhsh, Amir Jalali, David Jao, and Vladimir Soukharev.
\newblock A post-quantum digital signature scheme based on supersingular
isogenies.
\newblock In {\em International Conference on Financial Cryptography and Data
Security}, pages 163--181. Springer, 2017.
\end{thebibliography}