{"title":"Recursive quantum repeater networks","authors":"R. V. Meter, J. Touch, Dominic C. Horsman","doi":"10.2201/NiiPi.2011.8.8","DOIUrl":null,"url":null,"abstract":"Internet-scale quantum repeater networks will be heterogeneous in physical technology, repeater functionality, and management. The classical control necessary to use the network will therefore face similar issues as Internet data transmission. Many scalability and management problems that arose during the development of the Internet might have been solved in a more uniform fashion, improving flexibility and reducing redundant engineering effort. Quantum repeater network development is currently at the stage where we risk similar duplication when separate systems are combined. We propose a unifying framework that can be used with all existing repeater designs. We introduce the notion of a Quantum Recursive Network Architecture, developed from the emerging classical concept of 'recursive networks', extending recursive mechanisms from a focus on data forwarding to a more general distributed computing request framework. Recursion abstracts independent transit networks as single relay nodes, unifies software layering, and virtualizes the addresses of resources to improve information hiding and resource management. Our architecture is useful for building arbitrary distributed states, including fundamental distributed states such as Bell pairs and GHZ, W, and cluster states.","PeriodicalId":91638,"journal":{"name":"... Proceedings of the ... IEEE International Conference on Progress in Informatics and Computing. IEEE International Conference on Progress in Informatics and Computing","volume":"88 1","pages":"65-79"},"PeriodicalIF":0.0000,"publicationDate":"2011-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"42","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"... Proceedings of the ... IEEE International Conference on Progress in Informatics and Computing. IEEE International Conference on Progress in Informatics and Computing","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2201/NiiPi.2011.8.8","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 42

Abstract

Internet-scale quantum repeater networks will be heterogeneous in physical technology, repeater functionality, and management. The classical control necessary to use the network will therefore face similar issues as Internet data transmission. Many scalability and management problems that arose during the development of the Internet might have been solved in a more uniform fashion, improving flexibility and reducing redundant engineering effort. Quantum repeater network development is currently at the stage where we risk similar duplication when separate systems are combined. We propose a unifying framework that can be used with all existing repeater designs. We introduce the notion of a Quantum Recursive Network Architecture, developed from the emerging classical concept of 'recursive networks', extending recursive mechanisms from a focus on data forwarding to a more general distributed computing request framework. Recursion abstracts independent transit networks as single relay nodes, unifies software layering, and virtualizes the addresses of resources to improve information hiding and resource management. Our architecture is useful for building arbitrary distributed states, including fundamental distributed states such as Bell pairs and GHZ, W, and cluster states.
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递归量子中继网络
互联网规模的量子中继器网络在物理技术、中继器功能和管理上将是异构的。因此,使用网络所必需的传统控制将面临与互联网数据传输类似的问题。Internet开发过程中出现的许多可伸缩性和管理问题本可以以更统一的方式解决,从而提高灵活性并减少冗余的工程工作。量子中继网络的发展目前处于一个阶段,当分离的系统组合在一起时,我们面临着类似的重复风险。我们提出了一个统一的框架,可用于所有现有的中继器设计。我们介绍了量子递归网络架构的概念,从新兴的经典“递归网络”概念发展而来,将递归机制从关注数据转发扩展到更通用的分布式计算请求框架。递归将独立的中转网络抽象为单个中继节点,统一软件分层,虚拟化资源地址,提高信息隐藏和资源管理能力。我们的架构可用于构建任意分布式状态,包括基本分布式状态,如贝尔对和GHZ、W和集群状态。
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