Revealing New Physics in $B^0_s\to D_s^\mp K^\pm$ Decays
Abstract
The system offers a determination of the Unitarity Triangle angle . Intrigued by an LHCb analysis showing a surprisingly large result in tension with information on the Unitarity Triangle and other measurements, we make a transparent study of the measured observables, confirming the LHCb picture. The corresponding puzzle at the level would require CP-violating contributions of New Physics, which should also manifest themselves in the corresponding decay branching ratios. Indeed, we find that the rates of the individual channels show puzzling patterns, in accordance with similar decays, with tensions up to , thereby making the situation much more exciting. We present a formalism to include New-Physics effects in a model-independent way and apply it to the data to constrain the corresponding parameters. Interestingly, new contributions of moderate size could accommodate the data. Utilising this formalism in the future high-precision physics era may allow us to finally establish new sources of CP violation.
Keywords
Cite
@article{arxiv.2110.04240,
title = {Revealing New Physics in $B^0_s\to D_s^\mp K^\pm$ Decays},
author = {Robert Fleischer and Eleftheria Malami},
journal= {arXiv preprint arXiv:2110.04240},
year = {2023}
}
Comments
16 pages, 4 figures. The current version matches the published one