Preparation of individual magnetic sub-levels of He(S) in a supersonic beam using laser optical pumping and magnetic hexapole focusing
arXiv:2106.13016 · doi:10.1063/5.0048323
Abstract
We compare two different experimental techniques for the magnetic-sub-level preparation of metastable He in the S level in a supersonic beam, namely magnetic hexapole focusing and optical pumping by laser radiation. At a beam velocity of m/s, we deduce from a comparison with a particle trajectory simulation that up to \% of the metastable atoms are in the sub-level after magnetic hexapole focusing. Using laser optical pumping via the PS transition, we achieve a maximum efficiency of \% for the population of the sub-level. For the first time, we show that laser optical pumping via the PS transition can be used to selectively populate each of the three sub-levels ( -1, 0, +1). We also find that laser optical pumping leads to higher absolute atom numbers in specific sub-levels than magnetic hexapole focusing.
24 pages, 8 figures
References in corpus (4)
- Frequency metrology of helium around 1083 nm and determination of the nuclear charge radius
- High-precision spectroscopy of the forbidden 2 3S1 - 2 1P1 transition in quantum degenerate metastable helium
- Electron and recoil ion momentum imaging with a magneto-optically trapped target
- Zeeman deceleration of electron-impact-excited metastable helium atoms