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Quantum Communication: From Fundamentals to Recent Trends, Challenges and Open Problems
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With the recent advancements and developments in quantum technologies, the emerging field of quantum communication and networking has gained the attention of the researchers. Owing to the unique properties of quantum mechanics, viz., quantum superposition and entanglement, this new area of quantum communication has shown potential to replace modernday communication technologies. The enhanced security and high information sharing ability using principles of quantum mechanics has encouraged networking engineers and physicists to develop this technology for next generation wireless systems. However, a conceptual bridge between the fundamentals of quantum mechanics, photonics and the deployability of a quantum communication infrastructure is not well founded in the current literature. This paper aims to fill this gap by merging the theoretical concepts from quantum physics to the engineering and computing perspectives of quantum technology. This paper builds the fundamental concepts required for understanding quantum communication, reviews the key concepts and demonstrates how these concepts can be leveraged for accomplishing successful communication. The paper delves into implementation advancements for executing quantum communication protocols, explaining how hardware implementation enables the achievement of all basic quantum computing operations. Finally, the paper provides a comprehensive and critical review of the state-of-the-art advancements in the field of quantum communication and quantum internet; and points out the recent trends, challenges and open problems for the real-world realization of next generation networking systems.
Forward citations
Cited by 4 Pith papers
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Decision Models for Selecting Architecture Patterns and Strategies in Quantum Software Systems
The paper introduces six quality-attribute-driven decision models covering 63 architecture patterns and strategies across six design areas of quantum software, with positive but subjective practitioner feedback.
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Universal Fluctuations in the Tail Probability for d=2 Random Walks in Space-Time Random Environments
The reported d=2 random-walk universality result is unsupported: the full text is a quantum federated learning survey that never mentions random walks, tail probabilities, or lambda_ext.
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OSI Stack Redesign for Quantum Networks: Requirements, Technologies, Challenges, and Future Directions
The paper proposes a Quantum-Converged OSI stack with nine layers, adding Layer 0 (Quantum Substrate) and Layer 8 (Cognitive Intent Plane) to the classical OSI model for quantum networks.
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Networked Quantum Services
A survey of networked quantum services, from distributed quantum computers and cloud platforms to programming languages and standardization efforts.
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