English

Infrared and visible laser spectroscopy for highly-charged Ni-like ions

Atomic Physics 2018-03-14 v1

Abstract

Application of visible or infrared (IR) lasers for spectroscopy of highly-charged ions (HCI) has not been particularly extensive so far due to a mismatch in typical energies. We show here that the energy difference between the two lowest levels within the first excited configuration 3d94s3d^94s in Ni-like ions of heavy elements from ZNZ_N=60 to ZNZ_N=92 is within the range of visible or near-IR lasers. The wavelengths of these transitions are calculated within the relativistic model potential formalism and compared with other theoretical and limited experimental data. Detailed collisional-radiative simulations of non-Maxwellian and thermal plasmas are performed showing that photopumping between these levels using relatively moderate lasers is sufficient to provide a two-order of magnitude increase of the pumped level population. This accordingly results in a similar rise of the x-ray line intensity thereby allowing control of x-ray emission with visible/IR lasers.

Keywords

Cite

@article{arxiv.1704.05111,
  title  = {Infrared and visible laser spectroscopy for highly-charged Ni-like ions},
  author = {Yuri Ralchenko},
  journal= {arXiv preprint arXiv:1704.05111},
  year   = {2018}
}

Comments

14 pages, 4 figures; to be published in the HCI-2016 proceedings