RSIS Repository Open-access research from RSIS International journals

International Journal of Research and Innovation in Applied Science (IJRIAS)

Quantum TRNG for Secure Data Transmission

byDR. S. K. Rajalakshmi; M. Logeshwari; S. Swasthika Janani; R. Priyadharshini

Published February 11, 2026  •  Vol. 11, Issue 1, pp. 1134–1136Open Access
DOI: 10.51584/IJRIAS.2026.11010095

Abstract

Secure data transmission depends on unpredictable cryptographic keys. Conventional pseudorandom number generators are deterministic and vulnerable to prediction. This work proposes a Quantum True Random Number Generator (Q-TRNG) that uses quantum superposition and noise to produce truly random numbers. The generated quantum entropy is converted into high-quality random bits and applied to secure encryption, improving confidentiality and resistance to attacks. The proposed system offers a reliable and future- ready solution for quantum-grade secure communication.

Keywords: Q-TRNG, Quantum Randomness, Secure Data Transmission, Cryptography

JournalInternational Journal of Research and Innovation in Applied Science (IJRIAS)
ISSN2454-6194
Volume / IssueVolume 11, Issue 1
Pages1134–1136
Publication dateFebruary 11, 2026
DOI10.51584/IJRIAS.2026.11010095
PublisherRSIS International
LicenseOpen Access

How to cite this article

DR. S. K. Rajalakshmi, M. Logeshwari, S. Swasthika Janani, & R. Priyadharshini (2026). Quantum TRNG for Secure Data Transmission. International Journal of Research and Innovation in Applied Science (IJRIAS), 11(1), 1134-1136. https://doi.org/10.51584/IJRIAS.2026.11010095

BibTeX

@article{DR2026,
  title   = {Quantum TRNG for Secure Data Transmission},
  author  = {DR. S. K. Rajalakshmi and M. Logeshwari and S. Swasthika Janani and R. Priyadharshini},
  journal = {International Journal of Research and Innovation in Applied Science (IJRIAS)},
  volume  = {11},
  number  = {1},
  pages   = {1134--1136},
  year    = {2026},
  doi     = {10.51584/IJRIAS.2026.11010095},
  publisher = {RSIS International}
}