Laser Cooling Scheme for the Carbon Dimer ($^{12}$C$_2$)
Atomic Physics
2022-06-06 v1 Atomic and Molecular Clusters
Chemical Physics
Quantum Physics
Abstract
We report on a scheme for laser cooling of C. We have calculated the branching ratios for cycling and repumping transitions and calculated the number of photon scatterings required to achieve deflection and laser cooling of a beam of molecules under realistic experimental conditions. Our results demonstrate that C cooling using the Swan () and Duck () bands is achievable via techniques similar to state-of-the-art molecular cooling experiments. The Phillips () and Ballik-Ramsay () bands offer the potential for narrow-line cooling. This work opens up a path to cooling of molecules with carbon-carbon bonds and may pave the way toward quantum control of organic molecules.
Keywords
Cite
@article{arxiv.2112.10745,
title = {Laser Cooling Scheme for the Carbon Dimer ($^{12}$C$_2$)},
author = {Niccolò Bigagli and Daniel W. Savin and Sebastian Will},
journal= {arXiv preprint arXiv:2112.10745},
year = {2022}
}
Comments
7 pages, 5 figures