A Secure Messaging Framework with Integrated IDS and Quantum Cryptography

Authors

Paturi Pranay

PG Student Department of Computer Science, GSS, GITAM Deemed To be University (India)

Vanitha Kakollu

Assistant Professor Department of Computer Science, GSS, GITAM Deemed To be University (India)

Article Information

DOI: 10.51244/IJRSI.2026.1304000024

Subject Category: Education

Volume/Issue: 13/4 | Page No: 248-257

Publication Timeline

Submitted: 2026-04-04

Accepted: 2026-04-09

Published: 2026-04-25

Abstract

The fast evolution of digital communication technologies has prompted greater concerns about the security of data and communication channels. Classical cryptographic algorithms, although efficient, are becoming more susceptible to the power of future computational devices, especially those based on quantum computers. This article discusses the implementation of the Quantum Secure Messaging System, which seeks to improve secure communication systems by combining state-of-the-art security algorithms with an intuitive user interface. Although the messaging system does not rely on quantum cryptographic devices, the design of the system incorporates quantum-resistant cryptography concepts by emphasizing its ability to resist future attacks. This paper shows how secure messaging systems can be developed using modern web technologies.

Keywords

Quantum Secure Messaging, BB84 Protocol, Quantum Key Distribution (QKD), Encryption, Authentication

Downloads

References

1. H.-K. Lo, M. Curty, and K. Tamaki, “Secure Quantum Key Distribution,”pp. 595–604, 2014 (widely cited in post-2015 research). [Google Scholar] [Crossref]

2. Valerio Scarani et al., “The Security of Practical Quantum Key Distribution,” recent studies (2015+). [Google Scholar] [Crossref]

3. Mark M. Wilde, “Quantum Information Theory,” Cambridge University Press, 2017 (used extensively in modern QKD research). [Google Scholar] [Crossref]

4. Sebastian L. Braunstein and Stefano Pirandola, “Quantum Teleportation and Entanglement Distribution,” Reviews of Modern Physics, vol. 87, pp. 513– 577, 2015. [Google Scholar] [Crossref]

5. Stefano Pirandola et al., “Advances in Quantum Cryptography,” Advances in Optics and Photonics, vol. 12, no. 4, pp. 1012–1236, 2020 [6]Makarov, “Quantum Cryptography: Security and Practical Challenges,” IEEE Journal of Selected Topics in Quantum Electronics, vol. 21, no. 3, pp. 1–10, 2015. [Google Scholar] [Crossref]

6. Stephanie Wehner, David Elkouss, and Ronald Hanson,“Quantum Internet: A Vision for the Road Ahead,” Science, vol. 362, 2018 [Google Scholar] [Crossref]

7. National Institute of Standards and Technology, “Status Report on the SecondRound of the NIST Post-Quantum Cryptography Standardization Process,” 2019 [Google Scholar] [Crossref]

Metrics

Views & Downloads

Similar Articles