English

Kinetic-beam-energy determination via collinear laser spectroscopy

Atomic Physics 2021-03-17 v1

Abstract

An approach to determine the kinetic beam energy at the 10510^{-5} level is presented, which corresponds to an improvement by more than one order of magnitude compared to conventional methods. Particularly, collinear fluorescence and resonance ionization spectroscopy measurements on rare isotope beams, where the beam energy is a major contribution to the uncertainty, can benefit from this method. The approach is based on collinear spectroscopy and requires no special equipment besides a wavelength meter, which is commonly available. Its advent is demonstrated in a proof-of-principle experiment on a Ni beam. In preparation for the energy measurement, the rest-frame transition frequencies of the 3d94s  3D33d94p  3P23d^9 4s\;^3\mathrm{D}_3 \rightarrow 3d^9 4p\;^3\mathrm{P}_2 transitions in neutral nickel isotopes have been identified to be ν0(58Ni)=850343678(20)\nu_0(^{58}\mathrm{Ni})=850\,343\,678\,(20) MHz and ν0(60Ni)=850344183(20)\nu_0(^{60}\mathrm{Ni})=850\,344\,183\,(20) MHz.

Keywords

Cite

@article{arxiv.2102.08434,
  title  = {Kinetic-beam-energy determination via collinear laser spectroscopy},
  author = {Kristian König and Kei Minamisono and Jeremy Lantis and Skyy Pineda and Robert Powel},
  journal= {arXiv preprint arXiv:2102.08434},
  year   = {2021}
}