English

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 12^{12}C2_2. 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 C2C_2 molecules under realistic experimental conditions. Our results demonstrate that C2_2 cooling using the Swan (d3Πga3Πud^3\Pi_\text{g} \leftrightarrow a^3\Pi_\text{u}) and Duck (d3Πgc3Σu+d^3\Pi_\text{g} \leftrightarrow c^3\Sigma_\text{u}^+) bands is achievable via techniques similar to state-of-the-art molecular cooling experiments. The Phillips (A1ΠuX1Σg+A^1\Pi_\text{u} \leftrightarrow X^1\Sigma_\text{g}^+) and Ballik-Ramsay (b3Σga3Πub^3\Sigma_\text{g}^- \leftrightarrow a^3\Pi_\text{u}) 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

R2 v1 2026-06-24T08:25:04.516Z