Cold Molecule Spectroscopy for Constraining the Evolution of the Fine Structure Constant
Atomic Physics
2009-11-11 v2 General Physics
Abstract
We report precise measurements of ground-state, -doublet microwave transitions in the hydroxyl radical molecule (OH). Utilizing slow, cold molecules produced by a Stark decelerator we have improved over the precision of the previous best measurement by twenty-five-fold for the F' = 2 F = 2 transition, yielding (1 667 358 996 4) Hz, and by ten-fold for the F' = 1 F = 1 transition, yielding (1 665 401 803 12) Hz. Comparing these laboratory frequencies to those from OH megamasers in interstellar space will allow a sensitivity of 1 ppm for over years.
Cite
@article{arxiv.physics/0601054,
title = {Cold Molecule Spectroscopy for Constraining the Evolution of the Fine Structure Constant},
author = {Eric R. Hudson and H. J. Lewandowski and Brian C. Sawyer and Jun Ye},
journal= {arXiv preprint arXiv:physics/0601054},
year = {2009}
}
Comments
This version corrects minor typos in the Zeeman shift discussion