English

In situ Qubit Frequency Tuning Circuit for Scalable Superconducting Quantum Computing: Scheme and Experiment

Quantum Physics 2025-10-28 v2

Abstract

Frequency tunable qubit plays a significant role for scalable superconducting quantum processors. The state-of-the-art room-temperature electronics for tuning qubit frequency suffers from unscalable limit, such as heating problem, linear growth of control cables, etc. Here we propose a scalable scheme to tune the qubit frequency by using in situ superconducting circuit, which is based on radio frequency superconducting quantum interference device (rf-SQUID). We demonstrate both theoretically and experimentally that the qubit frequency could be modulated by inputting several single pulses into rf-SQUID. Compared with the traditional scheme, our scheme not only solves the heating problem, but also provides the potential to exponentially reduce the number of cables inside the dilute refrigerator and the room-temperature electronics resource for tuning qubit frequency, which is achieved by a time-division-multiplex (TDM) scheme combining rf-SQUID with switch arrays. With such TDM scheme, the number of cables could be reduced from the usual 3n\sim 3n to log2(3n)+1\sim \log_2{(3n)} + 1 for two-dimensional quantum processors comprising nn qubits and 2n\sim 2n couplers. Our work paves the way for large-scale control of superconducting quantum processor.

Keywords

Cite

@article{arxiv.2407.21415,
  title  = {In situ Qubit Frequency Tuning Circuit for Scalable Superconducting Quantum Computing: Scheme and Experiment},
  author = {Lei Jiang and Yu Xu and Shaowei Li and Zhiguang Yan and Ming Gong and Tao Rong and Chenyin Sun and Tianzuo Sun and Tao Jiang and Hui Deng and Chen Zha and Jin Lin and Fusheng Chen and Qingling Zhu and Yangsen Ye and Hao Rong and Kai Yan and Sirui Cao and Yuan Li and Shaojun Guo and Haoran Qian and Yisen Hu and Yulin Wu and Yuhuai Li and Gang Wu and Xueshen Wang and Shijian Wang and Wenhui Cao and Yeru Wang and Jinjin Li and Cheng-Zhi Peng and Xiaobo Zhu and Jian-Wei Pan},
  journal= {arXiv preprint arXiv:2407.21415},
  year   = {2025}
}

Comments

9 pages, 6 figures

R2 v1 2026-06-28T17:59:03.078Z