SECURING THE POST-QUANTUM ERA- ANALYZING QUANTUM THREATS, PQC SOLUTIONS, AND MIGRATION CHALLENGES
- Independent Researcher Scholar.
- Lead Technical Architect, Chicago USA.
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Abstract
The introduction of quantum computers is moving fast and one issue that should nt be overlooked is that they would be capable of breaking modern cryptographic systems easily. This scenario is likely to become real because with the help of Shor's algorithm they could break the only widely used public-key systems (e.g. RSA and ECC) which would mean that the security of internet communications,digital signaturesand sensitive stored data could be compromised. Even if post-quantum cryptography (PQC) is the right direction of development, there are many problems with it like low performance, complex implementation plans, complicated migration approaches and uncertain security eventually. This paper highlights the risk that quantum computers pose to current encryptions and gives an overview of the top PQC solutions that have been standardized by NIST. It also pinpoints the main problems that are still unsolved and offers practical strategies for mitigating the risk in this area. Based on an extensive review of literature and a computational experiment on hybrid key exchange, the article points out that hybrid approaches are the most efficient ones, cryptographic agility is necessary, and migration should be phased, these measures are aimed at making the transition to the post-quantum era safe and smooth.
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Bhanu Pratap Singh (2026); SECURING THE POST-QUANTUM ERA- ANALYZING QUANTUM THREATS, PQC SOLUTIONS, AND MIGRATION CHALLENGES, Int. J. of Adv. Res., 14 (07), 1173-1184, ISSN 2320-5407.
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