Classical Internet evolved exceptionally during the last five decades, from a network comprising a few static nodes in the early days to a leviathan interconnecting billions of devices. This has been possible by the separation of concern principle, for which the network functionalities are organized as a stack of layers, each providing some communication functionalities through specific network protocols. In this survey, we aim at highlighting the impossibility of adapting the classical Internet protocol stack to the Quantum Internet, due to the marvels of quantum mechanics. Indeed, the design of the Quantum Internet requires a major paradigm shift of the whole protocol stack for harnessing the peculiarities of quantum entanglement and quantum information. In this context, we first overview the relevant literature about Quantum Internet protocol stack. Then, stemming from this, we sheds the light on the open problems and required efforts toward the design of an effective and complete Quantum Internet protocol stack. To the best of authors' knowledge, a survey of this type is the first of its own. What emerges from this analysis is that the Quantum Internet, though still in its infancy, is a disruptive technology whose design requires an inter-disciplinary effort at the border between quantum physics, computer and telecommunications engineering.
翻译:在过去五十年中,古老的互联网从早期由几个静态节点组成的网络演变为连接数十亿个装置的利维坦网络。这之所以能够实现,是因为关注原则的分离,网络功能是按一系列层排列的,每个网络功能通过特定的网络协议提供一些通信功能。在这次调查中,我们的目的是强调由于量子力学的奇迹,不可能将古典互联网协议书堆改成量子互联网。事实上,量子互联网的设计要求对整个协议书架进行重大的范式转变,以利用量子缠绕和量子信息的特殊性。在这方面,我们首先概述有关量子互联网协议书堆的文献。然后,我们从这个角度出发,我们揭示了开放的问题,并要求努力设计有效和完整的量子互联网协议书堆。据作者所知,这种类型的调查是它自己的第一种。从这一分析中得出的是,Quantum互联网尽管仍处于初始阶段,但是一种破坏性的技术,需要计算机和电信界之间的设计,需要一种跨学科的物理设计。