Understand
We discuss the correlated systematic theoretical uncertainties that may be ascribed to the next-to-leading order QCD theory used to predict the one-jet inclusive cross section in hadron collisions.
- We estimate the magnitude of these errors as functions of the jet transverse momentum and rapidity.
- The total theoretical error is decomposed into a set of functions of transverse momentum and rapidity that give a model for statistically independent contributions to the error.
- This representation can be used to include the systematic theoretical errors in fits to the experimental data.
Built on
The one-jet inclusive cross-section at order α s 3 \alpha_{s}^{3} quarks and gluons
Stephen D. Ellis, Zoltan Kunszt, and Davison E. Soper · 1990
Earlier work this paper cites.
H. L. Lai et al · 1997
Earlier work this paper cites.
Effects of higher-order threshold corrections in high- E T E_{T} jet production
Nikolaos Kidonakis and J. F. Owens · 2001
Earlier work this paper cites.
Similar
High order corrections for top quark and jet production at the Tevatron
Nikolaos Kidonakis · 2001
Cited alongside, same era.
Fast pQCD calculations for PDF fits
T. Kluge, K. Rabbertz, and M. Wobisch · 2006
Cited alongside, same era.
NNLO QCD predictions for the H → W W → ℓ ℓ ν ν H\to WW\to\ell\ell\nu\nu signal at the LHC
Charalampos Anastasiou, Gunther Dissertori, and Fabian Stockli · 2007
Cited alongside, same era.
Then
Power corrections for jets at hadron colliders
Matteo Cacciari, Mrinal Dasgupta, Lorenzo Magnea, and Gavin Salam · 2007
Later among the works it cites.
Non-perturbative QCD effects in jets at hadron colliders
Mrinal Dasgupta, Lorenzo Magnea, and Gavin P. Salam · 2008
Later among the works it cites.
Analytical studies for non-perturbative QCD of jets at hadron colliders
Mrinal Dasgupta, Lorenzo Magnea, and Gavin Salam · 2008
Later among the works it cites.
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