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Testing the Scale Dependence of the Scale Factor in Double Dijet Production at the LHC

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arxiv 0906.4335 v1 pith:6XXMLTPP submitted 2009-06-23 hep-ph

Testing the Scale Dependence of the Scale Factor in Double Dijet Production at the LHC

classification hep-ph
keywords scaleenergytransversedijetdoublefactortwo-partoncollisions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The scale factor is the effective cross section used to characterize the measured rate of inclusive double dijet production in high energy hadron collisions. It is sensitive to the two-parton distributions in the hadronic projectile. In principle, the scale factor depends on the center of mass energy and on the minimal transverse energy of the jets contributing to the double dijet cross section. Here, we point out that proton-proton collisions at the LHC will provide for the first time experimental access to these scale dependences in a logarithmically wide, nominally perturbative kinematic range of minimal transverse energy between 10 GeV and 100 GeV. This constrains the dependence of two-parton distribution functions on parton momentum fractions and parton localization in impact parameter space. Novel information is to be expected about the transverse growth of hadronic distribution functions in the range of semi-hard Bjorken x (0.001 < x < 0.1) and high resolution Q^2. We discuss to what extent one can disentangle different pictures of the $x$-evolution of two-parton distributions in the transverse plane by measuring double-hard scattering events at the LHC.

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    Global fit of an x- and μ-dependent Gaussian model for transverse double parton distributions to LHC and Tevatron data extracts parameters for calculating effective cross sections in other observables.