English

Deceleration and trapping of SrF molecules

Atomic Physics 2021-11-29 v1

Abstract

We report on the electrostatic trapping of neutral SrF molecules. The molecules are captured from a cryogenic buffer-gas beam source into the moving traps of a 4.5 m long traveling-wave Stark decelerator. The SrF molecules in X2Σ+(v=0,N=1)X^2\Sigma^+(v=0, N=1) state are brought to rest as the velocity of the moving traps is gradually reduced from 190 m/s to zero. The molecules are held for up to 50 ms in multiple electric traps of the decelerator. The trapped packets have a volume (FWHM) of 1 mm3^{3} and a velocity spread of 5(1) m/s which corresponds to a temperature of 60(20)60(20) mK. Our result demonstrates a factor 3 increase in the molecular mass that has been Stark-decelerated and trapped. Heavy molecules (mass>>100 amu) offer a highly increased sensitivity to probe physics beyond the Standard Model. This work significantly extends the species of neutral molecules of which slow beams can be created for collision studies, precision measurement and trapping experiments.

Keywords

Cite

@article{arxiv.2103.07968,
  title  = {Deceleration and trapping of SrF molecules},
  author = {eEDM collaboration and P. Aggarwal and Y. Yin and K. Esajas and H. L. Bethlem and A. Boeschoten and A. Borschevsky and S. Hoekstra and K. Jungmann and V. R. Marshall and T. B. Meijknecht and M. C. Mooij and R. G. E. Timmermans and A. Touwen and W. Ubachs and L. Willmann},
  journal= {arXiv preprint arXiv:2103.07968},
  year   = {2021}
}
R2 v1 2026-06-24T00:07:55.654Z