Parton distributions for the LHC run II
Функции распределения партонов для второго периода работы LHC
2015-04-01
SCID: 54.1/p6dwdqne
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HERA-II deep-inelastic scatteringLHC Run II 13 TeVNNPDF3.0closure testparton distribution functions
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Abstract (AI)
We present NNPDF3.0, the first set of parton distribution functions (PDFs) determined with a methodology validated by a closure test. NNPDF3.0 uses a global dataset including HERA-II deep-inelastic inclusive cross-sections, the combined HERA charm data, jet production from ATLAS and CMS, vector boson rapidity and transverse momentum distributions from ATLAS, CMS and LHCb, W +c data from CMS and top quark pair production total cross sections from ATLAS and CMS. Results are based on LO, NLO and NNLO QCD theory and also include electroweak corrections. To validate our methodology, we show that PDFs determined from pseudo-data generated from a known underlying law correctly reproduce the statistical distributions expected on the basis of the assumed experimental uncertainties. This closure test ensures that our methodological uncertainties are negligible in comparison to the generic theoretical and experimental uncertainties of PDF determination. This enables us to determine with confidence PDFs at different perturbative orders and using a variety of experimental datasets ranging from HERA-only up to a global set including the latest LHC results, all using precisely the same validated methodology. We explore some of the phenomenological implications of our results for the upcoming 13 TeV Run of the LHC, in particular for Higgs production cross-sections.
Key Findings
1
Closure tests show PDFs fitted to pseudo-data reproduce expected statistical distributions given experimental uncertainties, validating the fitting methodology.
2
NNPDF3.0 fits use a global dataset including HERA-II inclusive and combined HERA charm data, ATLAS/CMS jet production, ATLAS/CMS/LHCb vector boson distributions, CMS W+c, and ATLAS/CMS top-pair cross sections.
3
NNPDF3.0 is the first PDF set determined with a methodology validated by a closure test, demonstrating methodological uncertainties are negligible compared to experimental and theoretical ones.
4
Results are provided at LO, NLO and NNLO QCD and include electroweak corrections, enabling consistent PDF determinations across perturbative orders.
5
The validated PDFs are used to study phenomenological implications for 13 TeV LHC run II, notably Higgs production cross-sections.
Research Object
Parton distribution functions (NNPDF3.0) for the LHC Run II
Research Subject
Determination and validation (via closure test) of PDFs using a global dataset across LO, NLO, NNLO QCD with electroweak corrections, and assessment of their phenomenological implications for 13 TeV LHC observables (e.g., Higgs production cross-sections)
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2015-04-01
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