Quantum-Enhanced Zero Trust Security: Evolution, Implementation, and Application
作者:Jun Lin, Jiang Qiu, Weiyong Zhang, Zihao Lin, Xiaojiang Du · 年份:2024 · DOI:10.1109/qcnc62729.2024.00040 · 被引用次数:7 · 研究领域:Quantum Computing Algorithms and Architecture、Quantum Information and Cryptography、Security and Verification in Computing
In today's fast-paced digital economy, the widespread adoption of new technologies brings about significant challenges in network security. This paper delves into the evolution of Zero Trust network architecture, marking a significant shift from traditional perimeter-centric security methods. It embraces the “never trust, always verify” philosophy, moving away from conventional approaches. Subsequently, the paper explores the strategic implementation of Zero Trust, focusing on essential components such as Policy Enforcement Points (PEP) and Identity and Access Management (IAM). It also addresses the challenges in deploying Zero Trust architectures, including the high demands for real-time detection, and suggests viable solutions to these challenges. An important aspect of this study is the emerging role of quantum technology in enhancing network security. The integration of quantum technology with Zero Trust principles is poised to offer more robust network protection, particularly with the advancements in quantum key research. Current research in quantum keys opens new avenues for applying the Zero Trust philosophy in practical scenarios. This fusion is instrumental in laying the foundation for a more secure and innovative network security framework, aiming to effectively counter the evolving digital threats and strengthen the infrastructure of the digital economy against potential vulnerabilities.