Abdiukov, Tim (2025) Post-quantum authentication protocols for remote professional collaboration platforms: Balancing Speed, Security and Scalability. International Journal of Science and Research Archive, 16 (1). pp. 1946-1956. ISSN 2582-8185
Abstract
The study investigates the use of post-quantum authentication protocols to provide protection of remote professional collaboration frameworks against the anticipated threats that quantum computing would introduce. Since quantum computers pose a risk to the security of all conventional cryptography, a great switchover to post-quantum alternatives is necessary in the development of powerful cryptography in the various communication applications. The research notes that the amplification of the speed, the level of security, and scalability in the implementation of quantum-proof standards is a critical issue which is needed to be addressed. Based on case studies and performance measurements, the research is able to determine important protocols, including lattice-based and multivariate encryption, which have potential relative security without a negative effect on the user experience. The results also point to the need to incorporate such protocols into the current platforms with little to no consequences in terms of the performance of the system and its interaction with users. This research advances the idea of effective guidelines to securing future collaboration tools by making them resistant to quantum attacks, proving almost as fast and scalable as this is necessary in modern working conditions.
Item Type: | Article |
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Official URL: | https://doi.org/10.30574/ijsra.2025.16.1.2237 |
Uncontrolled Keywords: | Post-Quantum Cryptography; Quantum Threats; Authentication Protocols; Scalability Challenges; Security Solutions; Lattice-Based Cryptography |
Date Deposited: | 01 Sep 2025 13:29 |
Related URLs: | |
URI: | https://eprint.scholarsrepository.com/id/eprint/4762 |