Demystifying Security Analysis of Intercept-and-Resend Attack Over Quantum Key Distribution (QKD) Protocols
Karthika Sorna Ilakkia J, Immanuel Johnraja Jebadurai, Getzi Jeba Leelipushpam Paulraj · 2025
In the contemporary quantum world, all the things depend on upcoming quantum technology because of its effectiveness and robustness on deploying it in certain devices. An important use of quantum cryptography is quantum key distribution (QKD), which promises strong security by utilising quantum mechanical properties. However, real-world attack strategies have created practical vulnerabilities. The practical security analysis of intercept-and-resend attacks over continuous variable quantum key distribution (CV-QKD) and discrete variable quantum key distribution (DV-QKD) protocols is investigated in this work. The simulation models can be developed using custom NumPy and QuTip, we systematically analyze the protocols performance under changing channel losses and attack probabilities for the successful emulation of quantum communication processes. In order to evaluate protocol robustness, our study assesses key security measures such as Key generation rate and channel loss exemplified by simulation over QKD protocols. Our simulation testbed shows the sensitivity of the protocols to Intercept-and-Resend (IR) attacks and recognize under various environments where the security premises breakdown. The main objective of this work is to bridge the research gap between quantum theoretic security and its deployment in real-world communication networks, provides a clear insight into the design and development of more sophisticated quantum secure framework.