English

Characterizing and Mitigating Flux Crosstalk in Superconducting Qubits-Couplers System

Quantum Physics 2025-12-22 v3 Applied Physics

Abstract

Superconducting qubits have achieved exceptional gate fidelities, exceeding the error-correction threshold in recent years. One key ingredient of such improvement is the introduction of tunable couplers to control the qubit-to-qubit coupling through frequency tuning. Moving toward fault-tolerant quantum computation, increasing the number of physical qubits is another step toward effective error correction codes. Under a multiqubit architecture, flux control (Z) lines are crucial in tuning the frequency of the qubits and couplers. However, dense flux lines result in magnetic flux crosstalk, wherein magnetic flux applied to one element inadvertently affects neighboring qubits or couplers. This crosstalk obscures the idle frequency of the qubit when flux bias is applied, which degrades gate performance and calibration accuracy. In this study, we characterize flux crosstalk and suppress it in a multiqubit-coupler chip with multi-Z lines without adding additional readout for couplers. By quantifying the mutual flux-induced frequency shifts of qubits and couplers, we construct a cancellation matrix that enables precise compensation of non-local flux, demonstrating a substantial reduction in Z-line crosstalk from 56.5\,permille\,to 0.13\,permille\, which is close to statistical error. Flux compensation corrects the CZ SWAP measurement, leading to a symmetric map with respect to flux bias. Compared with a crosstalk-free calculated CZ SWAP map, the measured map indicates that our approach provides a near-zero crosstalk for the coupler-transmon system. These results highlight the effectiveness of our approach in enhancing flux crosstalk-free control and supporting its potential for scaling superconducting quantum processors.

Keywords

Cite

@article{arxiv.2508.03434,
  title  = {Characterizing and Mitigating Flux Crosstalk in Superconducting Qubits-Couplers System},
  author = {Myrron Albert Callera Aguila and Nien-Yu Li and Chen-Hsun Ma and Li-Chieh Hsiao and Yi-Shiang Huang and Yen-Chun Chen and Teik-Hui Lee and Chin-Chia Chang and Jyh-Yang Wang and Ssu-Yen Huang and Hsi-Sheng Goan and Chiao-Hsuan Wang and Cen-Shawn Wu and Chii-Dong Chen and Chung-Ting Ke},
  journal= {arXiv preprint arXiv:2508.03434},
  year   = {2025}
}

Comments

v3: 25 pages, 11 figures, 6 tables. Revisions include: revised several arguments in main text in main text and supplemental material; corrected mislabeled methods in Table S4; key results unchanged; updated references in main text and SI; minor typographical corrections

R2 v1 2026-07-01T04:35:09.552Z