The Impact of the Quantum Data Plane Overhead on the Throughput

Jessica Illiano, A. S. Cacciapuoti, A. Manzalini, M. Caleffi
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引用次数: 2

Abstract

Currently, although a standard distinction between quantum data plane and quantum control plane is still missing, preliminary works specify that classical control messages operating at the granularity of individual qubits and entangled pairs are, in terms of functionalities, closer to classical packet headers than control plane messages. Thus, they have been considered as part of the quantum data plane, by contributing to its overall overhead. As a consequence, the very concept of throughput needs to be re-defined and studied within the Quantum Internet. The aim of this treatise is to shed the light on this crucial aspect. Specifically, we conduct a theoretical analysis to understand the factors determining the overhead in the quantum data plane and their reflection on the throughput. The analysis is crucial and preliminary for designing any effective quantum communication protocol. Specifically, we derive closed-form expressions of the throughput in different scenarios, and the nonlinear relationship between throughput, entanglement throughput and classical bit rate is disclosed. Finally, we validate the theoretical analysis through numerical results conducted on the IBM Q-Experience platform.
量子数据平面开销对吞吐量的影响
目前,虽然量子数据平面和量子控制平面之间的标准区别仍然缺失,但初步研究表明,在单个量子比特和纠缠对粒度上运行的经典控制消息在功能上比控制平面消息更接近经典包头。因此,它们被认为是量子数据平面的一部分,贡献了它的总体开销。因此,吞吐量的概念需要在量子互联网中重新定义和研究。这篇论文的目的是阐明这一关键方面。具体而言,我们进行了理论分析,以了解决定量子数据平面开销的因素及其对吞吐量的影响。这种分析对于设计任何有效的量子通信协议都是至关重要的。具体而言,我们推导了不同场景下吞吐量的封闭表达式,揭示了吞吐量、纠缠吞吐量与经典比特率之间的非线性关系。最后,通过IBM Q-Experience平台上的数值结果验证了理论分析的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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