arXiv:2201.03573·v2·High Energy Physics — Phenomenology
Lessons from the LHCb measurement of CP violation in
Yosef Nir🇮🇱 · Inbar Savoray🇮🇱 · Yehonatan Viernik🇮🇱
Abstract
The LHCb experiment measured the time-dependent CP asymmetries and in decay. Combining with the corresponding CP asymmetries and in decay, we find that the size of -spin breaking in this system is of order . Moreover, the data suggest that these effects are dominated by factorizable contributions. We further study the constraints on new physics contributions to (). New physics that is minimally flavor violating (MFV) cannot be distinguished from the Standard Model (SM) in these decays. However, new physics that is not MFV can mimic large -spin breaking. Requiring that the -spin breaking parameters remain below the size implied by the data leads to a lower bound of TeV on the scale of generic new physics. If the new physics is subject to the selection rules that follow from the Froggatt-Nielsen (FN) mechanism or from General Minimal Flavor Violation (GMFV), the bound is relaxed to 2 TeV.
Comments: 22 pages, 1 figure