A General Analysis of Wtb anomalous Couplings
Qing-Hong Cao, Bin Yan, Jiang-Hao Yu, Chen Zhang

TL;DR
This paper performs a comprehensive, model-independent analysis of Wtb couplings using collider data, revealing correlations among couplings and their sensitivity to new physics models and measurement precision.
Contribution
It introduces a set of parameters to study correlations among Wtb couplings and assesses their constraints across various new physics models with current and future collider data.
Findings
Improving measurements of single top production constrains coupling correlations.
Certain couplings are anti-correlated and sensitive to specific experimental measurements.
Constraints on Wtb couplings depend on new physics model parameters and measurement precision.
Abstract
We investigate new physics effects on the Wtb effective couplings in a model-independent manner. The new physics effects are summarized as four independent couplings , , and . Using single-top-quark productions and W-helicity fraction measurements at the LHC and Tevatron, we perform a global fit to impose constraints on top quark effective couplings. We introduce a set of parameters , , and to study the correlations among Wtb effective couplings. We show that (i) improving the measurements of and is important in constraining the correlation of and ; (ii) and are anti-correlated, which is sensitive to all the experiments; (iii) and are also anti-correlated, which is sensitive to the W-helicity measurements; (iv) the correlation between and…
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