论文标题

量子纠缠与自动稳定的令牌环,用于耐故障分布式量子计算系统

Quantum Entanglement with Self-stabilizing Token Ring for Fault-tolerant Distributed Quantum Computing System

论文作者

Jiang, Jehn-Ruey

论文摘要

本文展示了如何基于自动化令牌环算法构建n个量子位的量子纠缠状态。纠缠状态可以应用于量子网络,量子互联网,分布式量子计算和量子云的字段。据我们所知,这是基于自动化算法构建量子纠缠的首次尝试。通过基于IBM量子体验平台的量子电路实现,证明该结构确实可以实现特定的n量子纠缠状态,而该状态可以用于在量子网络或量子互联网中循环一个令牌或用于构建分布式量子计算系统(DQC)的量子Internet。构建的DQC是易于断层的,因为它可以忍受瞬时断层,例如偶尔出现纠缠量子状态的误差。

This paper shows how to construct quantum entanglement states of n qubits based on a self-stabilizing token ring algorithm. The entangled states can be applied to the fields of the quantum network, quantum Internet, distributed quantum computing, and quantum cloud. To the best of our knowledge, this is the first attempt to construct quantum entanglement based on the self-stabilizing algorithm. By the quantum circuit implementation based on the IBM Quantum Experience platform, it is demonstrated that the construction indeed can achieve specific n qubit entangled states, which in turn can be used to circulate a token in a quantum network or quantum Internet for building a distributed quantum computing system (DQCS). The built DQCS is fault-tolerant in the sense that it can tolerate transient faults such as occasional errors of entangled quantum states.

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