English

Production and spectroscopy of cold radioactive molecules

Atomic Physics 2025-08-13 v1 Nuclear Experiment Chemical Physics

Abstract

Molecules with heavy, radioactive nuclei promise extreme sensitivity to fundamental nuclear and particle physics. However, these nuclei are available in limited quantities, which challenges their use in precision measurements. Here we demonstrate the gas-phase synthesis, cryogenic cooling, and high-resolution laser spectroscopy of radium monohydroxide, monodeuteroxide, and monofluoride molecules (226^{226}RaOH, 226^{226}RaOD, and 226^{226}RaF) in a tabletop apparatus by combining novel radioactive target production protocols, optically driven chemistry in a cryogenic buffer gas, and low-background spectroscopic detection methods. The molecules are cooled in the lab frame, creating conditions that are the same starting points as many current molecular precision measurement and quantum information experiments. This approach is readily applied to a wide range of species and establishes key capabilities for molecular quantum sensing of exotic nuclei.

Keywords

Cite

@article{arxiv.2508.08368,
  title  = {Production and spectroscopy of cold radioactive molecules},
  author = {Chandler J. Conn and Phelan Yu and Madison I. Howard and Yuxi Yang and Chaoqun Zhang and Arian Jadbabaie and Aikaterini Gorou and Alyssa N. Gaiser and Timothy C. Steimle and Lan Cheng and Nicholas R. Hutzler},
  journal= {arXiv preprint arXiv:2508.08368},
  year   = {2025}
}

Comments

24 pages, 14 figures, 10 tables. C.J.C and P.Y. contributed equally to this work