Principles of general final-state resummation and automated implementation
Abstract
Next-to-leading logarithmic final-state resummed predictions have traditionally been calculated, manually, separately for each observable. In this article we derive NLL resummed results for generic observables. We highlight and discuss the conditions that the observable should satisfy for the approach to be valid, in particular continuous globalness and recursive infrared and collinear safety. The resulting resummation formula is expressed in terms of certain well-defined characteristics of the observable. We have written a computer program, CAESAR, which, given a subroutine for an arbitrary observable, determines those characteristics, enabling full automation of a large class of final-state resummations, in a range of processes.
Keywords
Cite
@article{arxiv.hep-ph/0407286,
title = {Principles of general final-state resummation and automated implementation},
author = {Andrea Banfi and Gavin P. Salam and Giulia Zanderighi},
journal= {arXiv preprint arXiv:hep-ph/0407286},
year = {2011}
}
Comments
111 pages. 6 figures, JHEP class included. Section 1 contains a guide to reading the article; results obtained with CAESAR are available at http://qcd-caesar.org; v2 includes substantial new explanatory material (expansion of section 2, new appendices D & E), additional references, and corrects misprints