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Constraining couplings of top quarks to the Z boson in t t ˉ $$ toverline{t} $$ + Z production at the LHC

机译:将顶部码头的约束耦合到<重点类型=“斜体”> z boson在 T T ˉ $$ t overline {t} $$ + Z 在LHC的生产

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A bstract We study top quark pair production in association with a Z boson at the Large Hadron Collider (LHC) and investigate the prospects of measuring the couplings of top quarks to the Z boson. To date these couplings have not been constrained in direct measurements. Such a determination will be possible for the first time at the LHC. Our calculation improves previous coupling studies through the inclusion of next-to-leading order (NLO) QCD corrections in production and decays of all unstable particles. We treat top quarks in the narrow-width approximation and retain all NLO spin correlations. To determine the sensitivity of a coupling measurement we perform a binned log-likelihood ratio test based on normalization and shape information of the angle between the leptons from the Z boson decay. The obtained limits account for statistical uncertainties as well as leading theoretical systematics from residual scale dependence and parton distribution functions. We use current CMS data to place the first direct constraints on the t t ˉ Z $$ toverline{t} Z $$ couplings. We also consider the upcoming high-energy LHC run and find that with 300 fb_(?1) of data at an energy of 13 TeV the vector and axial t t ˉ Z $$ toverline{t} Z $$ coupling can be constrained at the 95% confidence level to C V = 0 . 24 ? 0.85 + 0.39 $$ {C}_{mathrm{V}}=0.{24}_{{}^{-0.85}}^{+0.39} $$ and C A = ? 0.6 0 ? 0.18 + 0.14 $$ {C}_{mathrm{A}}=-0.6{0}_{{}^{-0.18}}^{+0.14} $$ , where the central values are the Standard Model predictions. This is a reduction of uncertainties by 25% and 42%, respectively, compared to an analysis based on leading-order predictions. We also translate these results into limits on dimension-six operators contributing to the t t ˉ Z $$ toverline{t} Z $$ interactions beyond the Standard Model.
机译:Bstract我们研究了顶级夸克对生产与大型特罗龙撞机(LHC)的Z玻色子相关联,并调查测量顶部夸克对Z玻色子的联轴器的前景。迄今为止,这些耦合尚未受到直接测量的限制。在LHC首次,这种确定是可能的。我们的计算通过包括在生产和衰减中包含所有不稳定粒子的下一阶QCD校正来改善先前的耦合研究。我们在窄宽近似下对顶部夸克进行尊重并保留所有NLO旋转相关性。为了确定耦合测量的灵敏度,我们基于来自Z玻色子衰变的Zeptons之间的角度的归一化和形状信息来执行Binned Log-issiulh比率测试。所获得的限度占统计不确定性以及来自剩余规模依赖和Parton分配功能的领先理论系统。我们使用当前的CMS数据将第一个直接约束放置在Tˉz $$ t overline {t} z $$耦合上。我们还考虑即将到来的高能量LHC运行,并发现在13 TEV的能量下有300 FB _(?1)的数据,矢量和轴向TTˉZ $$ T overline {T} Z $$耦合可以受约束在95%的置信水平到CV = 0。 24? 0.85 + 0.39 $$ {c} _ { mathrm {v}} = 0. {24} _ {{} ^ { - 0.85} ^ {+ 0.39} $$和c a =? 0.6 0? 0.18 + 0.14 $$ {c} _ { mathrm {a}} = - 0.6 {0} _ {{} ^ { - 0.118}} ^ {+ 0.118} $$,其中中心值是标准模型预测。与基于领先订单预测的分析相比,这分别将不确定性降低25%和42%。我们还将这些结果转换为尺寸-6运算符的限制,该六个运算符为T TˉZ $$ T overline {t} z $$相互作用之外的标准模型。

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