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Intensity-resolved measurement of above-threshold ionization of Ar-H$_2$O

Atomic Physics 2023-10-26 v3 Chemical Physics

Abstract

Above-treshold ionization (ATI) by femtosecond laser pulses centered at 515\,nm is studied for a gas mixture containing the Van-der-Waals complex Ar-H2_2O. By detecting photoions and -electrons in coincidence, the ATI spectra for Ar, Ar2_2, \HHO, and Ar-\HHO are discerned and measured simultaneously. Using an intensity-scanning technique, we observe the red-shift of the ATI spectra as a function of the laser intensity. The intensity-dependent shift of the ATI peak positions observed for Ar-H2_2O and H2_2O match but significantly differ from the ones measured for Ar and Ar2_2. This indicates that the photoelectron is emitted from the \HHO site of the complex and the vertical ionization potential of Ar-H2_2O is determined as (12.4±0.1)(12.4 \pm 0.1)\,eV. For resacttered electrons, however, an enhancement of high-order ATI is observed for Ar-H2_2O, as compared to H2_2O, suggesting that the relatively large Ar atom acts as a scattering center, which influences the ionization dynamics.

Keywords

Cite

@article{arxiv.2305.07077,
  title  = {Intensity-resolved measurement of above-threshold ionization of Ar-H$_2$O},
  author = {Adrian Platz and Sebastian Hell and Yinyu Zhang and Bo Ying and Gerhard G. Paulus and Matthias Kübel},
  journal= {arXiv preprint arXiv:2305.07077},
  year   = {2023}
}

Comments

8 pages, 7 figures