Bottomed baryon decays with invisible Majorana fermions
arXiv:2206.01575 · doi:10.1103/PhysRevD.106.115007
Abstract
We study the invisible Majorana fermions of in bottomed baryon decays with flavor-changing neutral currents (FCNCs) based on the model-independent effective Lagrangian between the quarks and invisible particles. From the bounds of the coupling constants extracted from the experiments, we examine the decay branching ratios of , , , , , and , which can be as large as , and for GeV, respectively. Some of these decays are accessible to the future experimental searches, such as Belle II.
18 pages, 29 figures
References in corpus (10)
- Search for decays using an inclusive tagging method at Belle II
- Masses and magnetic moments of hadrons with one and two open heavy quarks: heavy baryons and tetraquarks
- Interplay of dineutrino modes with semileptonic rare -decays
- Search for the Rare Decay B->K nu nubar
- MeV Dark Matter: Model Independent Bounds
- Nonleptonic two-body weak decays of in modified MIT bag model
- Time-reversal asymmetries and angular distributions in
- Sizable Time-reversal violating effects in bottom baryon decays
- Tensor form factors of transition from QCD light cone sum rules
- Searching via conservation laws