Application of the Principle of Maximum Conformality to the Top-Quark Charge Asymmetry at the LHC
arXiv:1410.1607 · doi:10.1103/PhysRevD.90.114034
Abstract
The Principle of Maximum Conformality (PMC) provides a systematic and process-independent method to derive renormalization scheme- and scale- independent fixed-order pQCD predictions. In Ref.\cite{pmc3}, we studied the top-quark charge asymmetry at the Tevatron. By applying the PMC, we have shown that the large discrepancies for the top-quark charge asymmetry between the Standard Model estimate and the CDF and D0 data are greatly reduced. In the present paper, with the help of the Bernreuther-Si program, we present a detailed PMC analysis on the top-quark pair production up to next-to-next-to-leading order level at the LHC. After applying PMC scale setting, the pQCD prediction for the top-quark charge asymmetry at the LHC has very small scale uncertainty; e.g., , , and . The corresponding predictions using conventional scale setting are: , , and . In these predictions, the scale errors are predicted by varying the initial renormalization and factorization scales in the ranges and . The PMC predictions are also in better agreement with the available ATLAS and CMS data. In addition, we have calculated the top-quark charge asymmetry assuming several typical cuts on the top-pair invariant mass . For example, assuming and , we obtain , , and .
10 pages, 4 figures. Discussion improved
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