English

A passively pumped vacuum package sustaining cold atoms for more than 200 days

Atomic Physics 2021-08-25 v4 Applied Physics

Abstract

Compact cold-atom sensors depend on vacuum technology. One of the major limitations to miniaturizing these sensors are the active pumps -- typically ion pumps -- required to sustain the low pressure needed for laser cooling. Although passively pumped chambers have been proposed as a solution to this problem, technical challenges have prevented successful operation at the levels needed for cold-atom experiments. We present the first demonstration of a vacuum package successfully independent of ion pumps for more than a week; our vacuum package is capable of sustaining a cloud of cold atoms in a magneto-optical trap (MOT) for greater than 200 days using only non-evaporable getters and a rubidium dispenser. Measurements of the MOT lifetime indicate the package maintains a pressure of better than 2×1072\times10^{-7} Torr. This result will significantly impact the development of compact atomic sensors, including those sensitive to magnetic fields, where the absence of an ion pump will be advantageous.

Keywords

Cite

@article{arxiv.2101.01051,
  title  = {A passively pumped vacuum package sustaining cold atoms for more than 200 days},
  author = {Bethany J. Little and Gregory W. Hoth and Justin Christensen and Chuck Walker and Dennis J. De Smet and Grant W. Biedermann and Jongmin Lee and Peter D. D. Schwindt},
  journal= {arXiv preprint arXiv:2101.01051},
  year   = {2021}
}

Comments

6 pages, 5 figures. (This replacement corrects cross-section value.)