Abstract:
The processes of reemission of attosecond electromagnetic pulses by systems in nonstationary states have been considered. The probabilities of the reemission of attosecond electromagnetic pulses at the resonance charge exchange of a proton on a hydrogen atom and at the decay of a quasistationary state, as well as the probabilities of the reemission of attosecond pulses by a system in a resonance external field, have been calculated as examples. The developed method can be applied to more complex targets, including targets in the collision state, and to various chemical reactions.
Citation:
V. I. Matveev, D. N. Makarov, “Dynamics of electronic transitions and reemission spectra of attosecond electromagnetic pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 99:5 (2014), 299–306; JETP Letters, 99:5 (2014), 258–265
This publication is cited in the following 6 articles:
K. A. Makarova, THE VIII INTERNATIONAL YOUNG RESEARCHERS' CONFERENCE – PHYSICS, TECHNOLOGY, INNOVATIONS (PTI-2021), 2466, THE VIII INTERNATIONAL YOUNG RESEARCHERS' CONFERENCE – PHYSICS, TECHNOLOGY, INNOVATIONS (PTI-2021), 2022, 030033
M. K. Eseev, V. I. Matveev, D. N. Makarov, JETP Letters, 114:7 (2021), 387–405
Z. Z. Alisultanov, G. O. Abdullaev, N. A. Demirov, Low Temperature Physics, 45:1 (2019), 107
D. N. Makarov, V. I. Matveev, JETP Letters, 101:3 (2015), 154–159
Lugovskoy A. Bray I., Eur. Phys. J. D, 69:12 (2015), 271