即插即用的毫开尔文温度超导量子控制器实现超过99.9%的平均门保真度
量子物理
2026-04-08 v1
摘要
大规模超导量子计算的发展需要在毫开尔文温度下实现高效原位控制方法,以支持高保真度操作。基于约瑟夫森结的超导电路因其速度快、功耗低和低温特性而提供有前景的解决方案。本文报告了一种超导量子控制器,可实现与10 mK处量子比特的直接芯片间互联,并支持高保真度全数字操作。随机基准测试揭示了均匀的高Clifford平均保真度99.9%,高能级泄漏量级为,估计的平均门操作能量为0.121 fJ,展示了解决超导量子计算中控制瓶颈的潜力。
引用
@article{arxiv.2604.05693,
title = {A plug-and-play superconducting quantum controller at millikelvin temperatures enables exceeding 99.9% average gate fidelity},
author = {Kuang Liu and Zhiyuan Wang and Xiaoliang He and Siqi Li and Hao Wu and Xiangyu Ren and Zhengqi Niu and Wangpeng Gao and Chenluo Zhang and Pei Huang and Yu Wu and Liliang Ying and Wei Peng and Jaw-Shen Tsai and Zhirong Lin},
journal= {arXiv preprint arXiv:2604.05693},
year = {2026}
}
备注
9 pages, 5 figures