$\epsilon_K$ and $\epsilon'/\epsilon$ in a diquark model
Abstract
Based on the calculations using the lattice QCD by RBC-UKQCD collaboration and a large dual QCD, the resulted , which is less than the experimental data by more than a in the standard model (SM), suggests the necessity of a new physics effect. In order to complement the insufficient , we study the extension of the SM with a colored scalar in a diquark model. In addition to the pure diquark box diagrams, it is found that the box diagrams with one -boson and one diquark, ignored in the literature, play an important role in the process. The mass difference between and in the diquark model is well below the current data, whereas the Kaon indirect CP violation gives a strict constraint on the new parameters. Three mechanisms are classified in the study of , and they include: tree-level diagram, QCD and electroweak penguins, and chromomagnetic dipole. Taking the Kobayashi-Maskawa phase as the unique CP source, we analyze each contribution of the three mechanisms in detail and conclude that these diquark-mediated effects can singly enhance to be of , depending on the values of free parameters, when the bound from is satisfied.
Keywords
Cite
@article{arxiv.1808.04097,
title = {$\epsilon_K$ and $\epsilon'/\epsilon$ in a diquark model},
author = {Chuan-Hung Chen and Takaaki Nomura},
journal= {arXiv preprint arXiv:1808.04097},
year = {2019}
}
Comments
44 pages, 10 figures, typos corrected, references added, and charged-Goldstone-boson effects included