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Measurement of the Inclusive Jet Cross Section at the Fermilab Tevatron p-pbar Collider Using a Cone-Based Jet Algorithm
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We present a measurement of the inclusive jet cross section in p-pbar collisions at sqrt{s}=1.96 TeV based on data collected by the CDF II detector with an integrated luminosity of 1.13 fb^-1. The measurement was made using the cone-based Midpoint jet clustering algorithm in the rapidity region of |y|<2.1. The results are consistent with next-to-leading-order perturbative QCD predictions based on recent parton distribution functions (PDFs), and are expected to provide increased precision in PDFs at high parton momentum fraction x. The results are also compared to the recent inclusive jet cross section measurement using the k_T jet clustering algorithm, and we find that the ratio of the cross sections measured with the two algorithms is in agreement with theoretical expectations over a large range of jet transverse momentum and rapidity.
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Cited by 3 Pith papers
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New CTEQ global analysis of quantum chromodynamics with high-precision data from the LHC
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Impact of LHC top-quark pair measurements to CTEQ-TEA PDF analysis
LHC top-quark pair production data have comparable per-data-point sensitivity to jet data for the gluon PDF, but their total constraining power is smaller due to fewer data points.
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The impact of LHC precision measurements of inclusive jet and dijet production on the CTEQ-TEA global PDF fit
New LHC inclusive jet data push the CT18 gluon harder at high x and shrink its uncertainty, while dijet data show stronger scale dependence and are set aside.
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