000490656 001__ 490656
000490656 005__ 20221221211425.0
000490656 037__ $$aPUBDB-2022-07891
000490656 041__ $$aEnglish
000490656 1001_ $$0P:(DE-H253)PIP1093753$$aArratia, Miguel$$b0$$eCorresponding author
000490656 1112_ $$aXXIX International Workshop on Deep-Inelastic Scattering and Related Subjects$$cSantiago de Compostela$$d2022-05-02 - 2022-05-06$$gDIS2022$$wSpain
000490656 245__ $$aMeasurement of Lepton-Jet correlation in DIS with H1 at HERA, using machine learning for unfolding
000490656 260__ $$c2022
000490656 3367_ $$033$$2EndNote$$aConference Paper
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000490656 3367_ $$0PUB:(DE-HGF)6$$2PUB:(DE-HGF)$$aConference Presentation$$bconf$$mconf$$s1671615082_13990
000490656 520__ $$aThe lepton-jet momentum imbalance in deep inelastic scattering events offers a useful set of observables for unifying collinear and transverse-momentum-dependent frameworks for describing high energy Quantum Chromodynamics interactions. A recent first measurement was made [1] of this imbalance in the laboratory frame using positron-proton collision data recordedf with the H1 experiment at HERA in the years 2006-2007. Using a new machine learning method, the measurement was performed simultaneously and unbinned in eight dimensions. The first results were presented as as set of four one-dimensional projections onto key observables. This work extends over those results by making use of the multi-differential nature of the unfolded result. In particular, distributions of lepton-jet correlation observables are studied as a function of the kinematic properties of the scattering process, i.e. as a function of the momentum transfer Q2>150 GeV2 and the inelasticity 0.2<y<0.7.
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000490656 693__ $$0EXP:(DE-H253)HERA(machine)-20150101$$1EXP:(DE-588)4159571-3$$5EXP:(DE-H253)HERA(machine)-20150101$$aHERA$$eFacility (machine) HERA$$x0
000490656 8564_ $$uhttps://bib-pubdb1.desy.de/record/490656/files/Arratia_DISWG6.pdf$$yRestricted
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000490656 9141_ $$y2022
000490656 9201_ $$0I:(DE-H253)H1-20120806$$kH1$$lH1 Kollaboration$$x0
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000490656 980__ $$aI:(DE-H253)H1-20120806
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