English

Relaxed parameter sensitivity for multiphoton quantum resonances

Quantum Physics 2026-03-11 v1

Abstract

Multiphoton resonances demonstrate the physical significance of counter-rotating wave terms in light-matter interactions. These resonances, however, are sensitive to detuning errors, making the phenomena challenging to experimentally observe. In this manuscript, we introduce an optimization strategy to address this problem. By using an optimized parameter segmented sequence (OPSS), the robustness against detuning errors of the high-order quantum state transfers can be substantially improved. We prove the versatility of our strategy against frequency detunings by demonstrating the evolution of two specific models. In both cases, the parameter window for maintaining a high state-transfer fidelity is substantially expanded. We further analyze the output photon flux of the optimized system and, taking the three-photon resonance as an example, demonstrate that the system remains capable of generating a stable output photon flux even in the presence of detuning errors.

Keywords

Cite

@article{arxiv.2603.09131,
  title  = {Relaxed parameter sensitivity for multiphoton quantum resonances},
  author = {Hao-Lin Zhong and Ke-Xiong Yan and Yi-Ming Yu and Shao-Wei Xu and Zhi-Cheng Shi and Ye-Hong Chen and Yan Xia},
  journal= {arXiv preprint arXiv:2603.09131},
  year   = {2026}
}

Comments

12 pages, 10 figures

R2 v1 2026-07-01T11:11:34.743Z