Using BDT method for the charm events selection in the DsTau experiment

E. Sitnikova
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Abstract

DsTau (NA65) at the CERN-SPS is a recently approved experiment, which aims to study the tau neutrino production in proton-nuclei interaction. The main source of tau neutrinos is the decay of Ds mesons, namely Ds → τντ and then τ → ντX. There is almost no data on the differential production cross section of Ds in proton-nucleus interactions, which leads to a large uncertainty of tau neutrino interaction cross section measurements preventing a precise test of Lepton Flavour Universality in neutrino scattering. DsTau addresses this issue and will provide essential inputs for future tau neutrino experiments. A large amount of charmed particles decay events (~105) is expected to be detected as well, providing a possibility for interesting by-product studies, in particular a search for intrinsic charm in a proton. The experimental method is based on a use of high resolution emulsion detectors for effective registration of events with short lived particle decays. Here I present the motivation of the study, details of the experimental technique and the possible improvement that BDT method can provide for the signal/background events separation.
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利用BDT方法对DsTau实验中的魅力事件进行选择
DsTau (NA65)是欧洲核子研究中心(CERN-SPS)最近批准的一项实验,旨在研究质子-原子核相互作用中tau中微子的产生。τ中微子的主要来源是Ds介子的衰变,即Ds→τντ和τ→ντX。质子-核相互作用中Ds的微分产生截面几乎没有数据,这导致tau中微子相互作用截面测量的不确定性很大,阻碍了中微子散射中轻子味普适性的精确测试。DsTau解决了这个问题,并将为未来的tau中微子实验提供必要的输入。大量的粲粒子衰变事件(~105)预计也将被探测到,这为有趣的副产品研究提供了可能性,特别是对质子内在粲子的研究。实验方法是基于使用高分辨率乳剂检测器来有效登记具有短寿命粒子衰变的事件。在这里,我介绍了研究的动机,实验技术的细节以及BDT方法可以为信号/背景事件分离提供的可能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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