Soft functions for generic jet algorithms and observables at hadron colliders

Open Access
Authors
  • D. Bertolini
  • D. Kolodrubetz
  • D. Neill
  • P. Pietrulewicz
Publication date 07-2017
Journal Journal of High Energy Physics
Article number 99
Volume | Issue number 2017 | 7
Number of pages 46
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
Abstract
We introduce a method to compute one-loop soft functions for exclusive N - jet processes at hadron colliders, allowing for different definitions of the algorithm that determines the jet regions and of the measurements in those regions. In particular, we generalize the N -jettiness hemisphere decomposition of ref. [1] in a manner that separates the dependence on the jet boundary from the observables measured inside the jet and beam regions. Results are given for several factorizable jet definitions, including anti-k T , XCone, and other geometric partitionings. We calculate explicitly the soft functions for angularity measurements, including jet mass and jet broadening, in ppL + 1 jet and explore the differences for various jet vetoes and algorithms. This includes a consistent treatment of rapidity divergences when applicable. We also compute analytic results for these soft functions in an expansion for a small jet radius R. We find that the small-R results, including corrections up to O(R2), accurately capture the full behavior over a large range of R.
Document type Article
Language English
Published at https://doi.org/10.1007/JHEP07(2017)099
Other links https://www.scopus.com/pages/publications/85025461454
Downloads
10.1007_JHEP07(2017)099 (Final published version)
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