Ramsey-type microwave spectroscopy on CO ($a^3\Pi$)
Abstract
Using a Ramsey-type setup, the lambda-doublet transition in the level of the state of CO was measured to be 394 064 870(10) Hz. In our molecular beam apparatus, a beam of metastable CO is prepared in a single quantum level by expanding CO into vacuum and exciting the molecules using a narrow-band UV laser system. After passing two microwave zones that are separated by 50 cm, the molecules are state-selectively deflected and detected 1 meter downstream on a position sensitive detector. In order to keep the molecules in a single level, a magnetic bias field is applied. We find the field-free transition frequency by taking the average of the and transitions, which have an almost equal but opposite Zeeman shift. The accuracy of this proof-of-principle experiment is a factor of 100 more accurate than the previous best value obtained for this transition.
Cite
@article{arxiv.1405.2740,
title = {Ramsey-type microwave spectroscopy on CO ($a^3\Pi$)},
author = {A. J. de Nijs and W. Ubachs and H. L. Bethlem},
journal= {arXiv preprint arXiv:1405.2740},
year = {2015}
}