Top tagging : an analytical perspective
arXiv:1807.04767 · doi:10.1007/JHEP09(2018)170
Abstract
In this paper we study aspects of top tagging from first principles of QCD. We find that the method known as the CMS top tagger becomes collinear unsafe at high and propose variants thereof which are IRC safe, and hence suitable for analytical studies, while giving a comparable performance to the CMS tagger. We also develop new techniques to identify three-pronged jet substructure, based on adaptations of the Y-splitter method and its combination with grooming. A novel feature of our studies, relative to previous calculations of two-pronged substructure, is our use of triple-collinear splitting functions, which owes to the presence of two mass scales of the same order, and , in the signal jet. We carry out leading logarithmic resummed calculations for the various top-taggers, for both background and signal jets, and compare the results to those from parton showers. We also identify and comment on the main features driving tagger performance at high and discuss the role of non-perturbative effects.
51 pages, 15 figures
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- Spin correlations in final-state parton showers and jet observables
- Computing -subjettiness for boosted jets
- Six Top Messages of New Physics at the LHC
- BIP: Boost Invariant Polynomials for Efficient Jet Tagging
- Investigating top tagging with Y-Splitter and N-subjettiness