No graph state is preparable in quantum networks with bipartite sources and no classical communication

IF 6.6 1区 物理与天体物理 Q1 PHYSICS, APPLIED npj Quantum Information Pub Date : 2023-11-18 DOI:10.1038/s41534-023-00789-3
Owidiusz Makuta, Laurens T. Ligthart, Remigiusz Augusiak
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引用次数: 2

Abstract

In research concerning quantum networks, it is often assumed that the parties can classically communicate with each other. However, classical communication might introduce a substantial delay to the network, especially if it is large. As the latency of a network is one of its most important characteristics, it is interesting to consider quantum networks in which parties cannot communicate classically and ask what limitations this assumption imposes on the possibility of preparing multipartite states in such networks. We show that graph states of an arbitrary prime local dimension known for their numerous applications in quantum information cannot be generated in a quantum network in which parties are connected via sources of bipartite quantum states and the classical communication is replaced by some pre-shared classical correlations. We then generalise our result to arbitrary quantum states that are sufficiently close to graph states.

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在具有二部源且没有经典通信的量子网络中,没有可准备的图态
在有关量子网络的研究中,通常假设双方可以经典地相互通信。然而,经典通信可能会给网络带来很大的延迟,特别是当延迟很大时。由于网络的延迟是其最重要的特征之一,考虑各方不能经典通信的量子网络并询问这种假设对在此类网络中准备多方状态的可能性施加了什么限制是很有趣的。我们证明了任意素数局部维的图态在量子信息中的众多应用不能在量子网络中生成,其中各方通过二部量子态源连接,经典通信被一些预共享的经典关联所取代。然后我们将我们的结果推广到足够接近图态的任意量子态。
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来源期刊
npj Quantum Information
npj Quantum Information Computer Science-Computer Science (miscellaneous)
CiteScore
13.70
自引率
3.90%
发文量
130
审稿时长
29 weeks
期刊介绍: The scope of npj Quantum Information spans across all relevant disciplines, fields, approaches and levels and so considers outstanding work ranging from fundamental research to applications and technologies.
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