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Candidate Molecules for Next-Generation Searches of Hadronic Charge-Parity Violation

Atomic Physics 2023-09-25 v2 High Energy Physics - Phenomenology Quantum Physics

Abstract

We systematically study a set of strongly polar heteronuclear diatomic molecules composed of laser-coolable atoms for their suitability as sensitive probes of new charge-parity violation in the hadron sector of matter. Using relativistic general-excitation-rank configuration interaction theory we single out the molecule francium-silver (FrAg) as the most promising system in this set and calculate its nuclear Schiff-moment interaction constant to WSMFrAg(Fr)=30168±2504a.u.W^\mathrm{FrAg}_{SM}(\mathrm{Fr}) = 30168 \pm 2504\mathrm{a.u.} for the target nucleus Fr. Our work includes the development of system-tailored atomic Gaussian basis sets for the target atom in each respective molecule.

Keywords

Cite

@article{arxiv.2309.11633,
  title  = {Candidate Molecules for Next-Generation Searches of Hadronic Charge-Parity Violation},
  author = {Aurélien Marc and Mickaël Hubert and Timo Fleig},
  journal= {arXiv preprint arXiv:2309.11633},
  year   = {2023}
}

Comments

16 pages, 10 tables