首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Mass dependent top forward-backward asymmetry in the effective Lagrangian approach: Addendum to 'Model independent analysis of the forward-backward asymmetry of top quark production at the Tevatron'
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Mass dependent top forward-backward asymmetry in the effective Lagrangian approach: Addendum to 'Model independent analysis of the forward-backward asymmetry of top quark production at the Tevatron'

机译:有效拉格朗日方法中与质量有关的顶部前后不对称性:“对Tevatron顶部夸克生产的前后不对称性的模型独立分析”的附录

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摘要

Recently the CDF and the D0 Collaborations presented the data on the top forward-backward (FB) asymmetry A FB as functions of M t t and Δ y ≡ y t ? y t. We study these observables in the effective Lagrangian approach with dimension-6 q q t t contact interactions, and compare with the CDF and D0 data. When we stay within the validity region of the effective Lagrangian approach, the mass dependent top FB asymmetry turns out to be smaller than the CDF data, more than 2-σ away. If this discrepancy remains in the future data with better statistics, it would imply that the effective Lagrangian approach is not adequate for the top FB asymmetry, and a new physics scale around a few hundred GeV in the t- or u-channel may be responsible for the observed top FB asymmetry.
机译:最近,CDF和D0协作将数据作为M t t和Δy y y t的函数提供在顶部前后(FB)不对称A FB上。 t我们在有效的拉格朗日方法中使用维度为6 q q t t的接触相互作用研究了这些可观测值,并与CDF和D0数据进行了比较。当我们停留在有效拉格朗日方法的有效范围内时,与质量相关的顶部FB不对称性会小于CDF数据,相差2-σ。如果这种差异在未来的数据中仍具有更好的统计数据,则意味着有效的拉格朗日方法不足以解决顶部FB不对称问题,并且可能会在t或u通道中产生几百个GeV的新物理尺度对于观察到的顶部FB不对称性。

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