Research Article

Quantum-Resilient Cryptographic Protocols for U.S. Data Security

Authors

  • Md Rasheduzzaman Labu Department of Information Assurance and Cybersecurity, Gannon University, Erie, Pennsylvania, USA

Abstract

As quantum computing technology advances, its capability to undermine widely adopted cryptographic systems presents a significant challenge to modern cybersecurity. This paper presents a strategic roadmap that shall help companies and industries in the USA understand how to proactively manage the risks associated with quantum-enabled attacks. The study proposes a quantum-resistant cryptographic framework, *STL-QCRYPTO*, which is targeted at bringing industry-specific methodologies for implementing quantum-safe security measures. The proposed framework guarantees long-term protection against the transformative impact of quantum computing. Emphasizing practical ways of deploying quantum-safe systems, this study gives active insight into mitigating emerging quantum cyber risks. The roadmap provides industries with the necessary tools to safeguard against key security threats that may emerge in the quantum era through a structured timeline and targeted recommendations.

Article information

Journal

Frontiers in Computer Science and Artificial Intelligence

Volume (Issue)

4 (3)

Pages

01-08

Published

2025-11-30

How to Cite

Md Rasheduzzaman Labu. (2025). Quantum-Resilient Cryptographic Protocols for U.S. Data Security. Frontiers in Computer Science and Artificial Intelligence, 4(3), 01-08. https://doi.org/10.32996/fcsai.2025.4.2.6

Downloads

Views

110

Downloads

161

Keywords:

Quantum-Resilient Cryptography; Data Security; Data breaches; STL-QCRYPTO; Quantum computing