Light assisted collisions in ultra-cold Tm atoms
arXiv:1701.07924 · doi:10.1103/PhysRevA.95.012706
Abstract
We studied light assisted collisions of Tm atoms in a magneto optical trap (MOT) for the first time, working on a weak cooling transition at 530.7 nm to . We observed a strong influence from radiation trapping and light assisted collisions on the dynamics of this trap. We carefully separated these two contributions and measured the binary loss rate constant at different laser powers and detuning frequencies near the cooling transition. Analyzing losses from the MOT, we found the light assisted inelastic binary loss rate constant to reach values of up to cm/s and gave the upper bound on a branching ratio for the 530.7 nm transition.
References in corpus (6)
- Bose-Einstein Condensation of Erbium
- Single Photon Transistor Mediated by Inter-State Rydberg Interaction
- New Limits on Coupling of Fundamental Constants to Gravity Using Sr Optical Lattice Clocks
- Magneto-Optical Trap for Thulium Atoms
- Light Assisted Collisional Loss in a Rb Ultracold Optical Trap
- Improved measurement of the hyperfine structure of the laser cooling level in Tm