English

Study of tau-neutrino production at the CERN SPS

High Energy Physics - Experiment 2017-08-30 v1 Instrumentation and Detectors

Abstract

The DsTau project proposes to study tau-neutrino production in high-energy proton interactions. The outcome of this experiment are prerequisite for measuring the ντ\nu_\tau charged-current cross section that has never been well measured. Precisely measuring the cross section would enable testing of lepton universality in ντ\nu_\tau scattering and it also has practical implications for neutrino oscillation experiments and high-energy astrophysical ντ\nu_\tau observations. DsD_s mesons, the source of tau neutrinos, following high-energy proton interactions will be studied by a novel approach to detect the double-kink topology of the decays DsτντD_s \rightarrow \tau\nu_\tau and τντX\tau\rightarrow\nu_\tau X. Directly measuring DsτD_s\rightarrow \tau decays will provide an inclusive measurement of the DsD_s production rate and decay branching ratio to τ\tau. The momentum reconstruction of DsD_s will be performed by combining topological variables. This project aims to detect 1,000 DsτD_s \rightarrow \tau decays in 2.3×1082.3 \times 10^8 proton interactions in tungsten target to study the differential production cross section of DsD_s mesons. To achieve this, state-of-the-art emulsion detectors with a nanometric-precision readout will be used. The data generated by this project will enable the ντ\nu_\tau cross section from DONUT to be re-evaluated, and this should significantly reduce the total systematic uncertainty. Furthermore, these results will provide essential data for future ντ\nu_\tau experiments such as the ντ\nu_\tau program in the SHiP project at CERN. In addition, the analysis of 2.3×1082.3 \times 10^8 proton interactions, combined with the expected high yield of 10510^5 charmed decays as by-products, will enable the extraction of additional physical quantities.

Keywords

Cite

@article{arxiv.1708.08700,
  title  = {Study of tau-neutrino production at the CERN SPS},
  author = {S. Aoki and A. Ariga and T. Ariga and E. Firu and T. Fukuda and Y. Gornushkin and A. M. Guler and M. Haiduc and K. Kodama and M. A. Korkmaz and U. Kose and M. Nakamura and T. Nakano and A. T. Neagu and H. Rokujo and O. Sato and S. Vasina and M. Vladymyrov and M. Yoshimoto},
  journal= {arXiv preprint arXiv:1708.08700},
  year   = {2017}
}

Comments

CERN-SPSC-2017-029 (SPSC-P-354)