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| Journal Article | PUBDB-2021-02428 |
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2021
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Please use a persistent id in citations: doi:10.1007/JHEP04(2021)032 doi:10.3204/PUBDB-2021-02428
Report No.: DESY-20-239; MAN/HEP/2020/011; MIT-CTP 5235; Nikhef 2020-031; UWThPh 2020-31; arXiv:2012.15568
Abstract: We develop a factorization framework to compute the double differential cross section in soft drop groomed jet mass and groomed jet radius. We describe the effective theories in the large, intermediate, and small groomed jet radius regions defined by the interplay of the jet mass and the groomed jet radius measurement. As an application we present the NLL′ results for the perturbative moments that are related to the coefficients C$_{1}$ and C$_{2}$ that specify the leading hadronization corrections up to three universal parameters. We compare our results with Monte Carlo simulations and a calculation using the coherent branching method.
Keyword(s): effective field theory ; quantum chromodynamics ; differential cross section: factorization ; jet: mass ; jet: hadronization ; correction: hadronization ; numerical calculations: Monte Carlo ; QCD ; Factorization ; Colliders ; Effective Field Theories ; Perturbative QCD ; Resummation ; Nonperturbative Effects
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EFT for Soft Drop Double Differential Cross Section
[10.3204/PUBDB-2021-00017]
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