X-ray Lasers in Cluster Flows and in Nanostructured Targets
- Autores: Ivanova E.P.1
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Afiliações:
- Institute for Spectroscopy, Russian Academy of Sciences
- Edição: Volume 127, Nº 1 (2019)
- Páginas: 69-76
- Seção: Laser Physics and Laser Optics
- URL: https://bakhtiniada.ru/0030-400X/article/view/166037
- DOI: https://doi.org/10.1134/S0030400X19070117
- ID: 166037
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Resumo
The paper presents a brief review of recent works concerning the modeling of X-ray lasers in cluster flows and in nanostructured targets. Calculations of the atomic characteristics are based on relativistic perturbation theory with a model potential of zero approximation. Two new results are discussed: (1) it is shown that a subpicosecond X-ray laser with λ = 41.8 nm formed in a xenon cluster flow can serve as an alternative to a free-electron laser and (2) in heavy Ni-like ions (Z ≥ 60), the ionization of ions and recombination of electrons are balanced at electronic temperatures ≥1500 eV; thus, the state of a Ni-like ion is quasi-steady-state. The inversions of many transition levels of an X-ray laser are also quasi-steady-state. The possibility of experimental observation of X-ray lasers based on 3p54d104p [J = 0] – 3p63d94p [J = 1] intrashell transitions in Gd36+ with wavelengths in the water window region is discussed.
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Sobre autores
E. Ivanova
Institute for Spectroscopy, Russian Academy of Sciences
Autor responsável pela correspondência
Email: eivanova@isan.troitsk.ru
Rússia, Moscow, 108840
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