Laser stripping of hydrogen atoms by direct ionization

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Abstract

Direct ionization of hydrogen atoms by laser irradiation is investigated as a potential new scheme to generate proton beams without stripping foils. The time-dependent Schrödinger equation describing the atom-radiation interaction is numerically solved obtaining accurate ionization cross-sections for a broad range of laser wavelengths, durations and energies. Parameters are identified where the Doppler frequency up-shift of radiation colliding with relativistic particles can lead to efficient ionization over large volumes and broad bandwidths using currently available lasers.

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Brunetti, E., Becker, W., Bryant, H. C., Jaroszynski, D. A., & Chou, W. (2015). Laser stripping of hydrogen atoms by direct ionization. New Journal of Physics, 17. https://doi.org/10.1088/1367-2630/17/5/053008

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