论文标题
向前靠背电荷不对称和弱混合角度和质子结构的测量
Factorization of the forward-backward charge asymmetry and measurements of the weak mixing angle and proton structure at hadron colliders
论文作者
论文摘要
在强子山子处的前向反向电荷不对称(AFB)对有效弱混合角表示的electroweak(ew)对称性破裂均敏感,以及由Parton分布函数(PDFS)建模的初始状态中的质子结构信息。由于它们的强相关性,使用测量的AFB光谱在弱混合角和PDF上的确定精度受到限制。在本文中,我们定义了一组结构参数,这些参数将AFB观察中夸克和古夸克之间的相对差异的唯一质子信息分解。除了从PDF和EW计算中提取弱混合角的常规方式外,我们提出了一种新方法,通过拟合观察到的AFB分布来确定弱混合角和质子结构项的价值,并确定较高的观察结果,以进一步降低衡量标准的术语,以便在较高的情况下实现量的不正确术语,从而分别降低了预先衡量的术语。 LHC实验。
The forward-backward charge asymmetry (AFB) at hadron colliders is sensitive to both the electroweak (EW) symmetry breaking represented by the effective weak mixing angle, and the proton structure information in the initial state modeled by the parton distribution functions (PDFs). Due to their strong correlation, the precisions of the determination on the weak mixing angle and PDFs using the measured AFB spectrum are limited. In this paper, we define a set of structure parameters which factorize the unique proton information of the relative difference between quarks and antiquarks in the AFB observation. Other than the conventional way of extracting the weak mixing angle fro the convolution of PDF and EW calculations, we propose a new method to simultaneously determine the value of the weak mixing angle and the proton structure terms by fitting to the observed AFB distribution, and point out the necessity of specifying additional observations to further reduce the uncertainties on the proton structure terms respectively, so that the model-independent high precision measurements can be achieved at the future LHC experiments.