English

Scalable protocol to mitigate $ZZ$ crosstalk in universal quantum gates

Quantum Physics 2024-02-21 v2

Abstract

High-fidelity universal quantum gates are widely acknowledged as essential for scalable quantum computation. However, in solid-state quantum systems, which hold promise as physical implementation platforms for quantum computation, the inevitable ZZZZ crosstalk resulting from interqubit interactions significantly impairs quantum operation performance. Here we propose a scalable protocol to achieve ZZZZ-crosstalk mitigation in universal quantum gates. This method converts the noisy Hamiltonian with ZZZZ crosstalk into a framework that efficiently suppresses all ZZZZ-crosstalk effects, leading to ideal target quantum operations. Specifically, we first analytically derive the ZZZZ-crosstalk mitigation conditions and then apply them to enhance the performance of target universal quantum gates. Moreover, numerical simulations validate the effectiveness of ZZZZ-crosstalk mitigation when multiple qubit gates operate concurrently. As a result, our protocol presents a promising approach for implementing practical parallel quantum gates in large-scale quantum computation scenarios.

Keywords

Cite

@article{arxiv.2307.05566,
  title  = {Scalable protocol to mitigate $ZZ$ crosstalk in universal quantum gates},
  author = {Yan Liang and Ming-Jie Liang and Sai Li and Z. D. Wang and Zheng-Yuan Xue},
  journal= {arXiv preprint arXiv:2307.05566},
  year   = {2024}
}
R2 v1 2026-06-28T11:27:35.840Z