arXiv · 2609.25753
Photon-Statistics Control of Strong-Field Rydberg-State Excitation
Abstract
Photon statistics provides a new control dimension for strong-field bound-state formation. Using a quantum-optical phase-space formulation coupled to time-dependent Schrödinger-equation calculations, we show that field fluctuations enhance multiphoton Rydberg excitation by broadening AC-Stark-shifted resonances, but suppress tunneling-mediated recapture even as ionization increases. A quantum-statistical recapture model attributes the latter to ensemble-induced dispersion of relative path phases. Photon statistics also reshapes Rydberg-manifold parity, linking field statistics to recapture coherence and final-state symmetry.
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Tao Jiang, Jinlei Liu, Haopu Dou, Lingyi Zhao, Peng Xiang, Liangjun Peng, Renyu Wang, Jing Zhao, Xiaowei Wang, Yue Lang, Zengxiu Zhao. 2026-09-22. Photon-Statistics Control of Strong-Field Rydberg-State Excitation. https://arxiv.org/abs/2609.25753
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