Intelligent Key Cryptography (IKC) using Tamil Unicode and Temporal Time: A Research Perspective Analysis
V Rojasree, J. Gnana Jayanthi · Indian Journal of Science and Technology · 2025
Objectives: To prove the qualitative competency of using Temporal Time and Tamil Unicode as the strength of Intelligent Key Cryptography (IKC) in the environment of quantum cryptographic threats by mathematically comparing the efficacy of IKC with the currently used cryptographic algorithms. Methods: This paper is focussed on adopting methods that prove the strengths of IKC by evaluating the literature for the various quantum threats and then proving mathematically how IKC withstands those threats. The methods include the mathematical evaluation for (i) dynamical key management, (ii) multi-algorithm encryption, (iii) robustness of security with key entropy, (iv) resistance to quantum attacks raised by Shor’s and Groover’s algorithm, (v) comparing the performance and scalability of IKC with the currently used cryptographic algorithms like DES, Blowfish, and AES in terms of encryption time, memory used and avalanche effect. Findings: This study's core contribution lies in the rigorous mathematical validation of IKC's performance competencies. It highlights IKC's methodologies, results, and discussions, which prove IKC to be a novel finding with the strength of dynamicity introduced by Tamil Unicode and Tamil in IKC to prove a strong cryptographic algorithm in the quantum cryptographic environment. Novelty: This study's key novelty lies in the findings substantiating that IKC meets the essential criteria for resilient cryptographic architecture. It can withstand quantum computational attacks and establish itself as a robust, quantum-attack-resistant architecture. Keywords: Post-Quantum Cryptography (PQC), Quantum Threats, Intelligent Key Cryptography (IKC), Cryptographic Algorithms, Quantum-Resistant Algorithms