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Photoionization broadening of the1S−2Stransition in a beam of atomic hydrogen

2006/09/15 by N. Kolachevsky, M. Haas, U. D. Jentschura +14 · 1 citation
Chemistry · Physics and Astronomy · #Advanced Fiber Laser Technologies #Laser-Matter Interactions and Applications #Spectroscopy and Laser Applications #quant-ph

paper · pdf · doi:10.1103/physreva.74.052504

published as Phys. Rev. A 74, 052504 (2006) · 10 pages, 5 figures

arxiv created 2006/09/15 · openalex publication_date 2006/11/15 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/31

Abstract

We consider the excitation dynamics of the two-photon 1S-2S transition in a beam of atomic hydrogen by 243\phantom\rule0.3em0exnm laser radiation. Specifically, we study the impact of ionization damping on the transition line shape, caused by the possibility of ionization of the 2S level by the same laser field. Using a Monte Carlo simulation, we calculate the line shape of the 1S-2S transition for the experimental geometry used in the two latest absolute frequency measurements [M. Niering et al., Phys. Rev. Lett. 84, 5496 (2000) and M. Fischer et al., Phys. Rev. Lett. 92, 230802 (2004)]. The calculated line shift and linewidth are in excellent agreement with the experimentally observed values. From this comparison we can verify the values of the dynamic Stark shift coefficient for the 1S-2S transition for the first time on a level of 15%. We show that the ionization modifies the velocity distribution of the metastable atoms, the line shape of the 1S-2S transition, and has an influence on the derivation of its absolute frequency.

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