$B^0\to K^{\ast 0}\mu^+\mu^-$ Decay in the Aligned Two-Higgs-Doublet Model
Abstract
In the aligned two-Higgs-doublet model, we perform a complete one-loop computation of the short-distance Wilson coefficients , which are the most relevant ones for transitions. It is found that, when the model parameter is much smaller than , the charged-scalar contributes mainly to chirality-flipped , with the corresponding effects being proportional to . Numerically, the charged-scalar effects fit into two categories: (A) are sizable, but , corresponding to the (large , small ) region; (B) and are sizable, but , corresponding to the (small , large ) region. Taking into account phenomenological constraints from the inclusive radiative decay , as well as the latest model-independent global analysis of data, we obtain the much restricted parameter space of the model. We then study the impact of the allowed model parameters on the angular observables and of decay, and find that could be increased significantly to be consistent with the experimental data in case B.
Keywords
Cite
@article{arxiv.1612.08867,
title = {$B^0\to K^{\ast 0}\mu^+\mu^-$ Decay in the Aligned Two-Higgs-Doublet Model},
author = {Quan-Yi Hu and Xin-Qiang Li and Ya-Dong Yang},
journal= {arXiv preprint arXiv:1612.08867},
year = {2017}
}
Comments
34 pages, 8 figures, 2 tables; More references and discussions added, final version published in the journal