English

Probing new physics with polarized $\tau$ and $\Lambda_c$ in quasielastic $\nu_{\tau}\!+\!n\!\to\! \tau^-\!+\!\Lambda_c$ scattering process

High Energy Physics - Phenomenology 2023-11-15 v3

Abstract

The absence of semitauonic decays of charmed hadrons makes the decay processes mediated by the quark-level cdτ+ντc\to d \tau^+ \nu_{\tau} transition inadequate for probing a generic new physics (NP) with all kinds of Dirac structures. To fill in this gap, we consider in this paper the quasielastic neutrino scattering process ντ+nτ+Λc\nu_{\tau}+n\to \tau^-+\Lambda_c, and propose searching for NP through the polarizations of the τ\tau lepton and the Λc\Lambda_c baryon. In the framework of a general low-energy effective Lagrangian, we perform a comprehensive analysis of the (differential) cross sections and polarization vectors of the process both within the Standard Model and in various NP scenarios, and scrutinize possible NP signals. We also explore the influence on our findings due to the uncertainties and the different parametrizations of the ΛcN\Lambda_c \to N transition form factors, and show that they have become one of the major challenges to further constrain possible NP through the quasielastic scattering process.

Keywords

Cite

@article{arxiv.2307.07239,
  title  = {Probing new physics with polarized $\tau$ and $\Lambda_c$ in quasielastic $\nu_{\tau}\!+\!n\!\to\! \tau^-\!+\!\Lambda_c$ scattering process},
  author = {Ya-Ru Kong and Li-Fen Lai and Xin-Qiang Li and Xin-Shuai Yan and Ya-Dong Yang and Dong-Hui Zheng},
  journal= {arXiv preprint arXiv:2307.07239},
  year   = {2023}
}

Comments

31 pages, 17 figures, and 3 tables. Comments are welcome