English

Genuine Tripartite Strong Coupling in a Superconducting-Spin Hybrid Quantum System

Quantum Physics 2025-12-16 v1

Abstract

We demonstrate genuine tripartite strong coupling in a solid-state hybrid quantum system comprising a superconducting transmon qubit, a fixed-frequency coplanar-waveguide resonator, and an ensemble of NV^- centers in diamond. Frequency-domain spectroscopy reveals a characteristic three-mode avoided crossing, indicating that single excitations are coherently shared across all three subsystems. At higher probe powers, we observe nonlinear features including multiphoton transitions and signatures of transmon-14N{}^{14}\mathrm{N} nuclear-spin interactions, highlighting the accessibility of higher-excitation manifolds in this architecture. These results establish a new regime of hybrid cavity QED that integrates superconducting and spin degrees of freedom, providing a platform for exploring complex multicomponent dynamics and developing hybrid quantum interfaces.

Keywords

Cite

@article{arxiv.2512.13129,
  title  = {Genuine Tripartite Strong Coupling in a Superconducting-Spin Hybrid Quantum System},
  author = {Yingqiu Mao and Han-Yu Ren and Zi-Yi Liu and Yi-Zheng Zhen and Tao Rong and Tao Jiang and Zhuo Chen and Zhe-Heng Yuan and Wen-Hua Qin and Xiaoran Zhang and Xiaobing Liu and Ming Gong and Kae Nemoto and William J. Munro and Johannes Majer},
  journal= {arXiv preprint arXiv:2512.13129},
  year   = {2025}
}

Comments

15 pages, 15 figures. Comments are welcome

R2 v1 2026-07-01T08:24:54.404Z