论文标题

表征和利用量子技术与非事物网络之间的相互作用

Characterizing and Utilizing the Interplay between Quantum Technologies and Non-Terrestrial Networks

论文作者

Al-Hraishawi, Hayder, Rehman, Junaid ur, Razavi, Mohsen, Chatzinotas, Symeon

论文摘要

量子技术越来越多地被认为是开创性的进步,旨在通过利用量子现象(如纠缠和传送)来重新定义计算,通信和感测的景观。量子技术提供了一系列有趣的优势,例如无条件的安全性,较大的通信能力,无与伦比的计算速度和超专有的传感功能。但是,他们的全球部署面临着与沟通范围和地理边界有关的挑战。通过提供自由空间量子链接以规避光纤固有的指数损失,非物化网络(NTN)已成为对这些挑战的潜在补救措施。本文研究了量子技术和NTN之间的动态相互作用,以揭示其协同潜力。具体而言,我们研究了他们的整合挑战和潜在的解决方案,以促进量子和NTN功能的共生融合,同时确定可增强互操作性的途径。本文不仅为相互优势提供了有用的见解,而且还提出了未来的研究方向,旨在激发更多的研究并促进这种跨学科的合作。

Quantum technologies are increasingly recognized as groundbreaking advancements set to redefine the landscape of computing, communications, and sensing by leveraging quantum phenomena, like entanglement and teleportation. Quantum technologies offer an interesting set of advantages such as unconditional security, large communications capacity, unparalleled computational speed, and ultra-precise sensing capabilities. However, their global deployment faces challenges related to communication ranges and geographical boundaries. Non-terrestrial networks (NTNs) have emerged as a potential remedy for these challenges through providing free-space quantum links to circumvent the exponential losses inherent in fiber optics. This paper delves into the dynamic interplay between quantum technologies and NTNs to unveil their synergistic potential. Specifically, we investigate their integration challenges and the potential solutions to foster a symbiotic convergence of quantum and NTN functionalities while identifying avenues for enhanced interoperability. This paper not only offers useful insights into the mutual advantages but also presents future research directions, aiming to inspire additional studies and advance this interdisciplinary collaboration.

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