Tightly Secure PKE Combiner in the Quantum Random Oracle Model
Summary
Figure: The QcQ-IND-CCA-security experiments for PKEs in the QROM.
The development of increasingly sophisticated quantum computers poses a long-term threat to current cryptographic infrastructure. This has spurred research into both quantum-resistant algorithms and how to safely transition real-world implementations and protocols to quantum-resistant replacements. This transition is likely to be a gradual process due to both the complexity and cost associated with transitioning. One method to ease the transition is the use of classical���quantum hybrid schemes, which provide security against both classical and quantum adversaries. We present a new combiner for creating hybrid encryption schemes directly from traditional encryption schemes. Our construction is the only existing proposal in the literature with -security in the classical and quantum random oracle models, respectively.
Keywords
public-key cryptography, hybrid encryption, quantum-resistance, combiners, PKEs
2023 Journal Impact Factor: 1.8
Publication date: June 2022
Links
References
| APA | Goncalves, B., & Mashatan, A. (2022). Tightly Secure PKE Combiner in the Quantum Random Oracle Model. Cryptography, 6(2), 15. |
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| BibTeX | @article{goncalves2022tightly, title={Tightly Secure PKE Combiner in the Quantum Random Oracle Model}, author={Goncalves, Brian and Mashatan, Atefeh}, journal={Cryptography}, volume={6}, number={2}, pages={15}, year={2022}, doi={10.3390/cryptography6020015} } |
| DOI | https://doi.org/10.3390/cryptography6020015 |
| IEEE | B. Goncalves and A. Mashatan, ���Tightly Secure PKE Combiner in the Quantum Random Oracle Model,��� Cryptography, vol. 6, no. 2, p. 15, June 2022. |
| ISSN | 2410-387X |
Acknowledgement
This research was supported, in part, by the and