论文标题

(反)中微子核散射中可见的运动学的tau纵向和横向极化

Tau longitudinal and transverse polarizations from visible kinematics in (anti-)neutrino nucleus scattering

论文作者

Hernández, E., Nieves, J., Sánchez, F., Sobczyk, J. E.

论文摘要

由于很难直接测量$ν_τ(\barν_τ)a_z \ toτ^\ mp x $反应,因此应从对Tau衰减可见产物的能量和角度分布的分析中提取有关此核过程动力学的信息。这些分布取决于tau极化载体的成分。我们首次给出了顺序的$ν_τA_z\ toτ^ - (π^ - ν_τ,ρ^ - ν_-p^-cT_-t_-v^-vist_τ)反应。尽管所有可能的核反应机制都有助于分布,但可以通过实施适当的选择标准来隔离/增强其中之一。对于超过6 GEV的氧和中微子能量的准弹性反应的情况,我们表明呈脉冲分布对tau极化成分的细节敏感。我们发现完整的计算之间存在显着差异,其中tau极化矢量的纵向和横向成分随产生的tau的能量和散射角而变化,而简化的方案将极化设置为一个和零(高能量状态下的渐近值值)。除了其对中微子振荡分析的潜在影响外,该结果还可以用于进一步测试不同的核模型,因为这些可观察到的可观察到的信息提供了通过包含核弱充电差异横截面获得的补充信息。我们还研究了$ W_4 $,$ W_5 $核结构功能的横截面的影响,该功能与带电的Lepton质量成正比,因此很难约束MUON和ELECTRON NETRINO实验。

Since the $ν_τ(\barν_τ) A_Z \to τ^\mp X$ reaction is notoriously difficult to be directly measured, the information on the dynamics of this nuclear process should be extracted from the analysis of the energy and angular distributions of the tau decay visible products. These distributions depend on the components of the tau-polarization vector. We give, for the first time, the general expression for the outgoing hadron (pion or rho meson) energy and angular differential cross section for the sequential $ν_τA_Z \to τ^-(π^- ν_τ, ρ^-ν_τ) X$ and $\barν_τA_Z \to τ^+(π^+ \barν_τ, ρ^+ \barν_τ) X$ reactions. Though all possible nuclear reaction mechanisms contribute to the distribution, it may be possible to isolate/enhance one of them by implementing appropriate selection criteria. For the case of the quasi-elastic reaction off oxygen and neutrino energies below 6 GeV, we show that the pion distributions are sensitive to the details of the tau-polarization components. We find significant differences between the full calculation, where the longitudinal and transverse components of the tau polarization vector vary with the energy and the scattering angle of the produced tau, and the simplified scheme in which the polarizations are set to one and zero (respective asymptotic values in the high energy regime). In addition to its potential impact on neutrino oscillation analyses, this result can be used to further test different nuclear models, since these observables provide complementary information to that obtained by means of the inclusive nuclear weak charged-current differential cross section. We also study the effects on the cross section of the $W_4$, $W_5$ nuclear structure functions, which contributions are proportional to the charged lepton mass, and therefore difficult to constrain in muon and electron neutrino experiments.

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