未来无线通信系统的量子实验室设置

Muhammad Sohaib J. Solaija, Muhammad Bilal Janjua, Liza Afeef, Armed Tusha, Ahmet Enes Duranay, H. Arslan, Orkun Hasekioglu
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引用次数: 0

摘要

第五代无线通信设想了一个多样化的网络,对容量、可靠性、安全性、延迟和无缝连接提出了严格的要求。这些崇高的目标促使研究人员寻找能够支持传统方法的技术。量子力学在通信领域的应用已经被考虑了一段时间,但任何量子现象对实验验证的依赖仍然是其广泛应用的障碍。为了实现这一目的,我们建议在土耳其建立一个量子光学实验室,以实现、分析和研究各种有前途的量子通信工具。本工作旨在描述和实验验证一些著名的量子实验,从相对简单的单光子或纠缠光子生成到更进化的量子随机数生成和量子密钥分发等实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum laboratory setup for future wireless communication systems
Fifth generation of wireless communication envisages a diverse network that imposes stringent requirements regarding capacity, reliability, security, latency and seamless connectivity. These lofty goals have driven researchers to look for technologies capable of supporting conventional methods. Application of quantum mechanics to the domain of communications has been considered for a while now but the reliance of any quantum phenomena on experimental verification remains an obstacle in its widespread use. To serve this purpose, we propose establishing a quantum optics laboratory in Turkey which will allow implementation, analysis and investigation of the various promising quantum communication tools. This work is directed towards description and experimental verification of some well-known quantum experiments, from relatively simpler ones such as single or entangled photon generation to the more evolved experiments like quantum random number generation and quantum key distribution.
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