New Physics Through Flavor Tagging at FCC-ee
Abstract
Leveraging recent advancements in machine learning-based flavor tagging, we develop an optimal analysis for measuring the hadronic cross-section ratios , , and at the FCC-ee during its , , and runs. Our results indicate up to a two-order-of-magnitude improvement in precision, providing an unprecedented test of the SM. Using these observables, along with and , we project sensitivity to flavor non-universal four-fermion (4F) interactions within the SMEFT, contributing both at the tree level and through the renormalization group (RG). We highlight a subtle complementarity with RG-induced effects at the FCC-ee's -pole. Our analysis demonstrates significant improvements over the current LEP-II and LHC bounds in probing flavor-conserving 4F operators involving heavy quark flavors and all lepton flavors. As an application, we explore simplified models addressing current -meson anomalies, demonstrating that FCC-ee can effectively probe the relevant parameter space. Finally, we design optimized search strategies for quark flavor-violating 4F interactions.
Cite
@article{arxiv.2411.02485,
title = {New Physics Through Flavor Tagging at FCC-ee},
author = {Admir Greljo and Hector Tiblom and Alessandro Valenti},
journal= {arXiv preprint arXiv:2411.02485},
year = {2024}
}
Comments
16 pages + appendices, 5 figures, 11 tables. v2: minor corrections, added plot for W,Y projections