We calculate the one-loop Z0-penguin contributions to the rare K-decays, K+→π+ννˉ, KL→π0ννˉ and KL→μ+μ−, from the unit-charged technipions π1 and π8 in the framework of the Multiscale Walking Technicolor Model. We find that: (a) the π1 and π8 can provide one to two orders enhancements to the branching ratios of the rare K-decays; (b) by comparing the experimental data of Br(K+→π+ννˉ) with the theoretical prediction one finds the lower mass bounds, mp8≥249GeV for FQ=40GeV and mp1=100GeV; (c) by comparing the experimental data of Br(KL→μ+μ−) with the theoretical predictions one finds the lower bounds on mp1 and mp8, mp1≥210GeV if only the contribution from π1 is taken into account, and mp8≥580GeV for mp1=210GeV, assuming FQ=40GeV; (d) the assumed ranges of the masses mp1 and mp8 in the Multiscale Walking Technicolor Model are excluded by the rare K-decay data.
@article{arxiv.hep-ph/9903347,
title = {The rare K-decays in the Multiscale Walking Technicolor Model},
author = {Zhenjun Xiao and Linxia Lü and Hongkai Guo and Gongru Lu},
journal= {arXiv preprint arXiv:hep-ph/9903347},
year = {2016}
}