Novel Perspectives in Quantum Safe Crypto algorithms for Enhanced Cyber Security

Year : 2024 | Volume :01 | Issue : 02 | Page : 18-22
By

    Manas Kumar Yogi

  1. Yamuna Mundru

  1. Assistant Professor, Assistant Professor, Department of CSE, Pragati Engineering College (A), Surampalem, Andhra Pradesh, India
  2. Assistant Professor, Department of CSE-AI& ML, Pragati Engineering College (A), Surampalem, Andhra Pradesh, India

Abstract

This paper explores novel perspectives in quantum-safe cryptographic algorithms to bolster cybersecurity in the face of impending quantum computing advancements. Due to the efficient resolution of intricate mathematical problems by quantum computers, posing a substantial threat to existing cryptographic systems, there is a pressing requirement to create resilient alternatives. This study delves into innovative approaches, drawing from quantum-resistant cryptographic primitives, lattice-based cryptography, code-based cryptography, and hash-based cryptography. By examining the strengths and vulnerabilities of these methods, the research aims to provide a comprehensive understanding of their applicability in real-world scenarios. Furthermore, the study investigates the integration of quantum-safe algorithms into existing systems, considering factors such as performance, scalability, and compatibility. The research contributes to the evolving landscape of cybersecurity by proposing practical solutions that address the imminent quantum threat. The findings have broad implications for industries, governments, and individuals reliant on secure communication and data protection, offering a roadmap for transitioning towards quantum-safe cryptographic infrastructures. Ultimately, this research seeks to advance the discourse on quantum-resistant cryptography, fostering a more secure digital environment in the era of quantum computing.

Keywords: Cybersecurity, attack, cryptography, quantum, privacy

[This article belongs to International Journal of Computer Science Languages(ijcsl)]

How to cite this article: Manas Kumar Yogi, Yamuna Mundru.Novel Perspectives in Quantum Safe Crypto algorithms for Enhanced Cyber Security.International Journal of Computer Science Languages.2024; 01(02):18-22.
How to cite this URL: Manas Kumar Yogi, Yamuna Mundru , Novel Perspectives in Quantum Safe Crypto algorithms for Enhanced Cyber Security ijcsl 2024 {cited 2024 Jan 08};01:18-22. Available from: https://journals.stmjournals.com/ijcsl/article=2024/view=130830


References

Abd El-Latif AA, Abd-El-Atty B, Mehmood I, Muhammad K, Venegas-Andraca S, Peng J. Quantum-inspired blockchain-based cybersecurity: securing smart edge utilities in IoT-based smart cities. Inform Process Manage. 2021; 58 (4): 102549.
Tosh D, Galindo O, Kreinovich V, Kosheleva O. Towards security of cyber-physical systems using quantum computing algorithms. In: 2020 IEEE 15th International Conference of System of Systems Engineering (SoSE), Budapest, Hungary, June 2–4,2020. pp. 313–320.
Szymanski TH. The “cyber security via determinism” paradigm for a quantum safe zero trust deterministic internet of things (IoT). IEEE Access. 2022; 10: 45893–45930.
Althobaiti OS, Dohler M. Cybersecurity challenges associated with the internet of things in a post-quantum world. IEEE Access. 2020; 8: 157356–157381.
Nyári N. The impact of quantum computing on IT security. Biztonságtudományi Szemle. 2021; 3 (4): 25–37.
Suhai, S, Hussain R, Khan A, Hong CS. On the role of hash-based signatures in quantum-safe internet of things: current solutions and future directions. IEEE Internet of Things J. 2020; 8 (1):1–17.
Selvarajan S, Mouratidis H. A quantum trust and consultative transaction-based blockchain cybersecurity model for healthcare systems. Sci Rep. 2023; 13 (1): Article 7107.
Badhwar R. The CISO’s Next Frontier: AI, Post-Quantum Cryptography and Advanced Security Paradigms. New York, NY, USA: Springer; 2021.
Thomasian NM, Adashi EY. Cybersecurity in the internet of medical things. Health Policy Technol. 2021; 10 (3): 100549.
Lindsay JR. Surviving the quantum cryptocalypse. Strategic Stud Q. 2020; 14 (2): 49–73.
Kuang R, Barbeau M. Quantum permutation pad for universal quantum-safe cryptography. Quantum Inform Process. 2022; 21 (6): Article 211.
Kuang R, Lou D, He A, Conlon A. Quantum safe lightweight cryptography with quantum permutation pad. In: 2021 IEEE 6th International Conference on Computer and Communication Systems (ICCCS), Chengdu, China, April 23–26, 2021. pp. 790–795.
Schrottenloher A. Quantum Algorithms for Cryptanalysis and Quantum-Safe Symmetric Cryptography. Doctoral Dissertation. Paris, France: Sorbonne Université; 2021.


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Volume 01
Issue 02
Received November 12, 2023
Accepted November 30, 2023
Published January 8, 2024