English

Electrostatic extraction of cold molecules from a cryogenic reservoir

Chemical Physics 2009-01-23 v2

Abstract

We present a method which delivers a continuous, high-density beam of slow and internally cold polar molecules. In our source, warm molecules are first cooled by collisions with a cryogenic helium buffer gas. Cold molecules are then extracted by means of an electrostatic quadrupole guide. For ND3_3 the source produces fluxes up to (7±47)×1010(7 \pm ^{7}_{4}) \times 10^{10} molecules/s with peak densities up to (1.0±0.61.0)×109(1.0 \pm ^{1.0}_{0.6}) \times 10^9 molecules/cm3^3. For H2_2CO the population of rovibrational states is monitored by depletion spectroscopy, resulting in single-state populations up to (82±10)(82 \pm 10)%.

Keywords

Cite

@article{arxiv.0806.2523,
  title  = {Electrostatic extraction of cold molecules from a cryogenic reservoir},
  author = {L. D. van Buuren and C. Sommer and M. Motsch and S. Pohle and M. Schenk and J. Bayerl and P. W. H. Pinkse and G. Rempe},
  journal= {arXiv preprint arXiv:0806.2523},
  year   = {2009}
}

Comments

4 pages, 4 figures, changes to the text, updated figures and references

R2 v1 2026-06-21T10:50:54.908Z