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Testing Lepton Flavor Universality at Future $Z$ Factories

High Energy Physics - Phenomenology 2022-12-06 v1 High Energy Physics - Experiment

Abstract

As one of the hypothetical principles in the Standard Model (SM), lepton flavor universality (LFU) should be tested with a precision as high as possible such that the physics violating this principle can be fully examined. The run of ZZ factory at a future e+ee^+e^- collider such as CEPC or FCC-eeee provides a great opportunity to perform this task because of the large statistics and high reconstruction efficiencies for bb-hadrons at ZZ pole. In this paper, we present a systematic study on the LFU test in the future ZZ factories. The goal is three-fold. Firstly, we study the sensitivities of measuring the LFU-violating observables of bcτνb\to c \tau \nu, i.e.i.e., RJ/ψR_{J/\psi}, RDsR_{D_s}, RDsR_{D_s^\ast} and RΛcR_{\Lambda_c}, where τ\tau decays muonically. For this purpose, we develop the strategies for event reconstruction, based on the track information significantly. Secondly, we explore the sensitivity robustness against detector performance and its potential improvement with the message of event shape or beyond the bb-hadron decays. A picture is drawn on the variation of analysis sensitivities with the detector tracking resolution and soft photon detectability, and the impact of Fox-Wolfram moments is studied on the measurement of relevant flavor events. Finally, we interpret the projected sensitivities in the SM effective field theory, by combining the LFU tests of bcτνb\to c \tau \nu and the measurements of bsτ+τb\to s \tau^+\tau^- and bsνˉνb\to s \bar{\nu} \nu. We show that the limits on the LFU-violating energy scale can be pushed up to O(10)\sim \mathcal{O} (10)~TeV for O(1)\lesssim \mathcal O(1) Wilson coefficients at Tera-ZZ.

Keywords

Cite

@article{arxiv.2212.02433,
  title  = {Testing Lepton Flavor Universality at Future $Z$ Factories},
  author = {Tin Seng Manfred Ho and Xu-Hui Jiang and Tsz Hong Kwok and Lingfeng Li and Tao Liu},
  journal= {arXiv preprint arXiv:2212.02433},
  year   = {2022}
}

Comments

63 pages, 27 figures

R2 v1 2026-06-28T07:22:41.219Z