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Article

Ethernet Passive Mutual Authentication Scheme on Quantum Networks

1
Jiaozuo Technician College, Jiaozuo 454000, China
2
School of Software, Henan Polytechnic University, Jiaozuo 454000, China
3
Shaanxi Key Laboratory of Information Communication Network and Security, Xi’an University of Posts & Telecommunications, Xi’an 710121, China
*
Author to whom correspondence should be addressed.
Entropy 2025, 27(2), 135; https://doi.org/10.3390/e27020135
Submission received: 15 December 2024 / Revised: 24 January 2025 / Accepted: 25 January 2025 / Published: 27 January 2025
(This article belongs to the Special Issue Nonlocality and Entanglement in Quantum Networks)

Abstract

In the context of increasing demand for secure and efficient communication networks, addressing the issue of mutual authentication in ethernet passive optical networks (EPONs) has become both valuable and practically significant. This paper proposes a solution based on ideal lattices. The proposed scheme leverages the security of the ring learning with errors (RLWE) problem to establish a robust public-key cryptosystem. By involving ONUs, OLTs, and an SDN controller in the authentication process, it enables mutual authentication through a series of message exchanges facilitated by the SDN controller. Utilizing approximate smooth projection hash functions for secure key exchange and verification, the scheme ensures robust security performance against various attacks, including man-in-the-middle, impersonation, replay, and known key secrecy attacks. Simulation results demonstrate that the proposed solution introduces minimal delay and maintains a high registration success rate compared to traditional authentication methods. Additionally, this paper explores the convergence of quantum network protocols with EPONs, highlighting their potential to achieve unprecedented levels of communication security. Integrating quantum technology with EPON networks, due to the unique security properties of quantum, can also better prevent man-in-the-middle attacks. Secure interception detection techniques based on fundamental quantum properties provide a fundamental security direction for future communication systems, aligning with the growing interest in quantum-resistant cryptographic protocols.
Keywords: ethernet passive optical network (EPON); ideal lattices; mutual authentication; ring learning with errors (RLWE); approximate smooth projection hash function; security performance evaluation; quantum networks; quantum security ethernet passive optical network (EPON); ideal lattices; mutual authentication; ring learning with errors (RLWE); approximate smooth projection hash function; security performance evaluation; quantum networks; quantum security

Share and Cite

MDPI and ACS Style

Tian, J.; Qin, P.; Zhao, Z.; Qin, B. Ethernet Passive Mutual Authentication Scheme on Quantum Networks. Entropy 2025, 27, 135. https://doi.org/10.3390/e27020135

AMA Style

Tian J, Qin P, Zhao Z, Qin B. Ethernet Passive Mutual Authentication Scheme on Quantum Networks. Entropy. 2025; 27(2):135. https://doi.org/10.3390/e27020135

Chicago/Turabian Style

Tian, Jianuo, Panke Qin, Zongqu Zhao, and Baodong Qin. 2025. "Ethernet Passive Mutual Authentication Scheme on Quantum Networks" Entropy 27, no. 2: 135. https://doi.org/10.3390/e27020135

APA Style

Tian, J., Qin, P., Zhao, Z., & Qin, B. (2025). Ethernet Passive Mutual Authentication Scheme on Quantum Networks. Entropy, 27(2), 135. https://doi.org/10.3390/e27020135

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