New Physics Patterns in $\varepsilon^\prime/\varepsilon$ and $\varepsilon_K$ with Implications for Rare Kaon Decays and $\Delta M_K$
Abstract
The SM prediction for the ratio appears to be significantly below the experimental data. Also in the SM tends to be below the data. Any NP removing these anomalies will first of all have impact on flavour observables in the meson system, in particular on rare decays and . Restricting the operators contributing to to the SM ones and to the corresponding primed operators, NP contributions are quite generally dominated either by QCD penguin (QCDP) operators or electroweak penguin (EWP) operators with rather different implications for other flavour observables. We discuss general models with tree-level and flavour violating exchanges and few specific models. We find that simultaneous enhancements of , , and in scenarios are only possible in the presence of both LH and RH flavour-violating couplings. In scenarios this is not required but the size of NP effects and the correlation between and depends strongly on whether QCDP or EWP dominate NP contributions to . In the QCDP case possible enhancements of both branching ratios are much larger than for EWP scenario and take place only on the branch parallel to the Grossman-Nir bound, which is in the case of EWP dominance only possible in the absence of NP in . QCDP and EWP scenarios of NP in can also be uniquely distinguished by the size and the sign of NP contribution to , elevating the importance of the precise calculation of in the SM.
Keywords
Cite
@article{arxiv.1601.00005,
title = {New Physics Patterns in $\varepsilon^\prime/\varepsilon$ and $\varepsilon_K$ with Implications for Rare Kaon Decays and $\Delta M_K$},
author = {Andrzej J. Buras},
journal= {arXiv preprint arXiv:1601.00005},
year = {2016}
}
Comments
67 pages, 6 Figures (12 Plots), references and clarifying comments on pages 3 and 9 and equation (24) added, conclusions unchanged