论文标题

SCQ云量子计算,用于生成最多10 QUAT的Greenberger-Horne-Zeilinger状态

ScQ cloud quantum computation for generating Greenberger-Horne-Zeilinger states of up to 10 qubits

论文作者

Chen, Chi-Tong, Shi, Yun-Hao, Xiang, Zhong-Cheng, Wang, Zheng-An, Li, Tian-Ming, Sun, Hao-Yu, He, Tian-Shen, Song, Xiao-Hui, Zhao, Shi-Ping, Zheng, Dongning, Xu, Kai, Fan, Heng

论文摘要

在这项研究中,我们基于10 Quibit超导处理器的一维阵列介绍了一个在线公共量子计算平台,称为SCQ。可以在每个量子位上执行单量旋转门。可以使用10 QUBITS的1D阵列上最近的邻居站点之间的受控门。我们通过此平台显示了Greenberger-Horne-Zeilinger状态的在线准备和验证,最多10 Qubits,用于链中所有可能的Qubits。介绍了图形用户界面和量子汇编语言方法以实现上述任务,该任务依赖于SCQ上实现的参数扫描功能。介绍了此量子计算平台的性能,例如逻辑门的保真度和超导设备的细节。

In this study, we introduce an online public quantum computation platform, named as ScQ, based on a 1D array of a 10-qubit superconducting processor. Single-qubit rotation gates can be performed on each qubit. Controlled-NOT gates between nearest-neighbor sites on the 1D array of 10 qubits are available. We show the online preparation and verification of Greenberger-Horne-Zeilinger states of up to 10 qubits through this platform for all possible blocks of qubits in the chain. The graphical user interface and quantum assembly language methods are presented to achieve the above tasks, which rely on a parameter scanning feature implemented on ScQ. The performance of this quantum computation platform, such as fidelities of logic gates and details of the superconducting device, are presented.

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