Unveiling the Quantum Internet: Potentials, Challenges, and Security through Simulation

Ahmed Abdullah Banaeimoon, Kalead Waleed, Zayed Rashed, Hasan Abu Hilal · Research Square · 2024

Abstract This study explores the potential of the quantum internet, a realm made possible by the foundational principles of quantum mechanics like entanglement and superposition. In this paper, we unravel the foundations of the quantum internet and its capacity to revolutionize technology. Our analysis dissects its fundamental aspects and emphasizes advantages like security and robustness, recognizing challenges like bandwidth limitations and costs. Quantum Key Distribution (QKD) is a big part of the quantum cryptography realm. It seeks to establish secure cryptographic keys among distant parties and detects potential eavesdropping attempts. The study also delves into future scenarios, applications, and quantum internet protocols, providing a holistic perspective. Through a simulated quantum communication scenario, we evaluate our research on system security by comparing error rates between quantum and classical counterparts. The simulation outcomes underscore the advantages of quantum communication in mitigating security threats and offer valuable insight into its superiority over classical systems. The exploration provides a nuanced understanding of the quantum internet's transformative prowess and pinpoints areas that need attention.

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