Depth-Optimized Quantum Implementation of ARIA
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-1235-9_5
Reference26 articles.
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2. Chauhan, A.K., Sanadhya, S.K.: Quantum resource estimates of Grover’s key search on ARIA. In: Batina, L., Picek, S., Mondal, M. (eds.) Security, Privacy, and Applied Cryptography Engineering. SPACE 2020. LNCS, vol. 12586, pp. 238–258. Springer, Cham (2020). https://doi.org/10.1007/978-3-030-66626-2_13
3. Cheung, D., Maslov, D., Mathew, J., Pradhan, D.K.: On the design and optimization of a quantum polynomial-time attack on elliptic curve cryptography. In: Kawano, Y., Mosca, M. (eds.) Theory of Quantum Computation, Communication, and Cryptography. TQC 2008. LNCS, vol. 5106, pp. 96–104. Springer, Berlin, Heidelberg (2008). https://doi.org/10.1007/978-3-540-89304-2_9
4. Chun, M., Baksi, A., Chattopadhyay, A.: Dorcis: depth optimized quantum implementation of substitution boxes. Cryptology ePrint Archive (2023)
5. Chung, D., Lee, S., Choi, D., Lee, J.: Alternative tower field construction for quantum implementation of the AES S-box. IEEE Trans. Comput. 71(10), 2553–2564 (2021)
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1. Quantum Implementation and Analysis of ARIA;2024 Silicon Valley Cybersecurity Conference (SVCC);2024-06-17
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