Entanglement-Assisted Quantum Networks: Mechanics, Enabling Technologies, Challenges, and Research Directions
Zhonghui Li, Kaiping Xue, Jian Li, Lutong Chen, Ruidong Li, Zhaoying, Wang, Nenghai Yu, David S.L. Wei, Qibin Sun, Jun Lu

TL;DR
This paper provides a comprehensive survey of entanglement-assisted quantum networks, covering their mechanics, enabling technologies, challenges, and future research directions to advance quantum communication infrastructure.
Contribution
It offers an in-depth review of the fundamental principles, network structures, and development stages of entanglement-assisted quantum networks, highlighting key challenges and open research areas.
Findings
Overview of quantum network structures and principles
Identification of critical challenges in wide-area quantum networks
Discussion of future research directions and standardization efforts
Abstract
Over the past few decades, significant progress has been made in quantum information technology, from theoretical studies to experimental demonstrations. Revolutionary quantum applications are now in the limelight, showcasing the advantages of quantum information technology and becoming a research hotspot in academia and industry. To enable quantum applications to have a more profound impact and wider application, the interconnection of multiple quantum nodes through quantum channels becomes essential. Building an entanglement-assisted quantum network, capable of realizing quantum information transmission between these quantum nodes, is the primary goal. However, entanglement-assisted quantum networks are governed by the unique laws of quantum mechanics, such as the superposition principle, the no-cloning theorem, and quantum entanglement, setting them apart from classical networks.…
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