![]() ![]() The theory of OJD was developed by Tkachov. Method of solution: The software we provide is an implementation of the so-called optimal jet definition ( OJD). provide a brief introduction to the subject of jet finding algorithms and a general review of the physics of jets can be found in. The jets are used in further analysis which would be difficult or impossible when applied directly to the hadrons. A large number of hadrons detected in the calorimeter is reduced to a few jets by means of a jet finding algorithm. Ireland Computer: Any computer with the FORTRAN 77 compiler Tested with: g77/Linux on Intel, Alpha and Sparc Sun f77/Solaris () xlf/AIX () MS Fortran PowerStation 4.0/Win98 Programming language used: FORTRAN 77 Memory required: ∼1 MB (or more, depending on the settings) Number of bytes in distributed program, including examples and test data: 251 463 Distribution format: tar gzip file Keywords: Hadronic jets, jet finding algorithms Nature of physical problem: Analysis of hadronic final states in high energy particle collision experiments often involves identification of hadronic jets. Program summaryTitle of program: Optimal Jet Finder (OJF_014) Catalogue identifier: ADSB Program Summary URL: Program obtainable from: CPC Program Library, Queen's University of Belfast, N. We discuss details of the implementation, explain interface subroutines and provide a usage example. We describe a FORTRAN 77 implementation of the optimal jet definition for identification of jets in hadronic final states of particle collisions. ![]()
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