English

Robust and optimal control of open quantum systems

Quantum Physics 2026-03-06 v1

Abstract

Recent advancements in quantum technologies have highlighted the importance of mitigating system imperfections, including parameter uncertainties and decoherence effects, to improve the performance of experimental platforms. However, most of the previous efforts in quantum control are devoted to the realization of arbitrary unitary operations in a closed quantum system. Here, we improve the algorithm that suppresses system imperfections and noises, providing notably enhanced scalability for robust and optimal control of open quantum systems. Through experimental validation in a superconducting quantum circuit, we demonstrate that our approach outperforms its conventional counterpart for closed quantum systems with an ultra-low infidelity of about 0.60%0.60\%, while the complexity of this algorithm exhibits the same scaling, with only a modest increase in the prefactor. This work represents a notable advancement in quantum optimal control techniques, paving the way for realizing quantum-enhanced technologies in practical applications.

Keywords

Cite

@article{arxiv.2603.05249,
  title  = {Robust and optimal control of open quantum systems},
  author = {Zi-Jie Chen and Hongwei Huang and Lida Sun and Qing-Xuan Jie and Jie Zhou and Ziyue Hua and Yifang Xu and Weiting Wang and Guang-Can Guo and Chang-Ling Zou and Luyan Sun and Xu-Bo Zou},
  journal= {arXiv preprint arXiv:2603.05249},
  year   = {2026}
}

Comments

26 pages,9 figures

R2 v1 2026-07-01T11:05:01.326Z