The mass area of jets
arXiv:1009.1143 · doi:10.1007/JHEP06(2011)038
Abstract
We introduce a new characteristic of jets called mass area. It is defined so as to measure the susceptibility of the jet's mass to contamination from soft background. The mass area is a close relative of the recently introduced catchment area of jets. We define it also in two variants: passive and active. As a preparatory step, we generalise the results for passive and active areas of two-particle jets to the case where the two constituent particles have arbitrary transverse momenta. As a main part of our study, we use the mass area to analyse a range of modern jet algorithms acting on simple one and two-particle systems. We find a whole variety of behaviours of passive and active mass areas depending on the algorithm, relative hardness of particles or their separation. We also study mass areas of jets from Monte Carlo simulations as well as give an example of how the concept of mass area can be used to correct jets for contamination from pileup. Our results show that the information provided by the mass area can be very useful in a range of jet-based analyses.
36 pages, 12 figures; v2: improved quality of two plots, added entry in acknowledgments, nicer form of formulae in appendix A; v3: added section with MC study and pileup correction, version accepted by JHEP
References in corpus (16)
- PYTHIA 6.4 Physics and Manual
- Jet substructure as a new Higgs search channel at the LHC
- Pileup subtraction using jet areas
- The Catchment Area of Jets
- Jet Trimming
- Top-tagging: A Method for Identifying Boosted Hadronic Tops
- Towards Jetography
- Fat Jets for a Light Higgs
- A practical Seedless Infrared-Safe Cone jet algorithm
- Non-perturbative QCD effects in jets at hadron colliders
- Jets in Hadron-Hadron Collisions
- On the characterisation of the underlying event
- Discovering baryon-number violating neutralino decays at the LHC
- Reconstructing Sparticle Mass Spectra using Hadronic Decays
- Quantifying the performance of jet definitions for kinematic reconstruction at the LHC
- Optimal jet radius in kinematic dijet reconstruction
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- Soft Drop
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- Pileup subtraction for jet shapes
- Pileup mitigation at the LHC: a theorist's view
- QCD and Jets at Hadron Colliders
- A data-driven method of pile-up correction for the substructure of massive jets
- Three-Prong Distribution of Massive Narrow QCD Jets