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ColliderBit: a GAMBIT module for the calculation of high-energy collider observables and likelihoods

Authors :
Balázs, Csaba
Buckley, Andy
Dal, Lars A.
Farmer, Ben
Jackson, Paul
Krislock, Abram
Kvellestad, Anders
Murnane, Daniel
Putze, Antje
Raklev, Are
Rogan, Christopher
Saavedra, Aldo
Scott, Pat
Weniger, Christoph
White, Martin
Publication Year :
2017

Abstract

We describe ColliderBit, a new code for the calculation of high energy collider observables in theories of physics beyond the Standard Model (BSM). ColliderBit features a generic interface to BSM models, a unique parallelised Monte Carlo event generation scheme suitable for large-scale supercomputer applications, and a number of LHC analyses, covering a reasonable range of the BSM signatures currently sought by ATLAS and CMS. ColliderBit also calculates likelihoods for Higgs sector observables, and LEP searches for BSM particles. These features are provided by a combination of new code unique to ColliderBit, and interfaces to existing state-of-the-art public codes. ColliderBit is both an important part of the GAMBIT framework for BSM inference, and a standalone tool for efficiently applying collider constraints to theories of new physics.<br />Comment: 31 pages, 7 figures, 17 tables. Replacement version accepted by EPJC

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1705.07919
Document Type :
Working Paper
Full Text :
https://doi.org/10.1140/epjc/s10052-017-5285-8