New Insights on an Old Problem: Resummation of the D-parameter
arXiv:1810.06563 · doi:10.1007/JHEP02(2019)104
Abstract
The -parameter is one of the oldest and most experimentally well-studied hadronic observables for collisions. Nevertheless, unlike other classic observables like the -parameter or thrust, the -parameter has never been resummed throughout its entire singular phase space. Using insights and techniques motivated by modern multi-differential jet substructure calculations, we are able to predict the -parameter distribution with no additional phase space cuts. Our approach is to measure both the - and -parameters on hadronic final states in collisions. We can tune the value of the -parameter with respect to the -parameter to specify simple, physical configurations of final state particles in which to perform calculations. There are three parametric regions that exist: , , and , and we calculate the -parameter in each region separately. In the first two of these three regions, we present all-orders factorization theorems and explicitly demonstrate resummation to next-to-leading logarithmic accuracy. The region in which corresponds to the dijet limit and where the -parameter loses the property of additivity. In this region we introduce a systematically-improvable procedure exploiting properties of conditional probabilities and resum to approximate next-to-leading logarithmic accuracy. The contributions from these regions can be consistently combined, and the value of the -parameter integrated over to produce the cross section for the -parameter. With these results, we match to leading fixed order as proof of principle and compare our resummed and matched prediction to data from LEP.
28 pages + appendices, 6 figures, v2: corrected errors with the original description of region 2; v3: JHEP version, updates to discussion of perturbative accuracy and hadronization corrections
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