English

Electrostatic trapping of metastable NH molecules

Atomic Physics 2008-01-07 v2 Chemical Physics

Abstract

We report on the Stark deceleration and electrostatic trapping of 14^{14}NH (a1Δa ^1\Delta) radicals. In the trap, the molecules are excited on the spin-forbidden A3Πa1ΔA ^3\Pi \leftarrow a ^1\Delta transition and detected via their subsequent fluorescence to the X3ΣX ^3\Sigma^- ground state. The 1/e trapping time is 1.4 ±\pm 0.1 s, from which a lower limit of 2.7 s for the radiative lifetime of the a1Δ,v=0,J=2a ^1\Delta, v=0,J=2 state is deduced. The spectral profile of the molecules in the trapping field is measured to probe their spatial distribution. Electrostatic trapping of metastable NH followed by optical pumping of the trapped molecules to the electronic ground state is an important step towards accumulation of these radicals in a magnetic trap.

Keywords

Cite

@article{arxiv.0709.3212,
  title  = {Electrostatic trapping of metastable NH molecules},
  author = {Steven Hoekstra and Markus Metsala and Peter C. Zieger and Ludwig Scharfenberg and Joop J. Gilijamse and Gerard Meijer and Sebastiaan Y. T. van de Meerakker},
  journal= {arXiv preprint arXiv:0709.3212},
  year   = {2008}
}

Comments

replaced with final version, added journal reference