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      Towards an understanding of the correlations in jet substructure : Report of BOOST2013, hosted by the University of Arizona, 12th–16th of August 2013

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      The European Physical Journal C
      Springer Nature

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          The anti-k_t jet clustering algorithm

          The k_t and Cambridge/Aachen inclusive jet finding algorithms for hadron-hadron collisions can be seen as belonging to a broader class of sequential recombination jet algorithms, parametrised by the power of the energy scale in the distance measure. We examine some properties of a new member of this class, for which the power is negative. This ``anti-k_t'' algorithm essentially behaves like an idealised cone algorithm, in that jets with only soft fragmentation are conical, active and passive areas are equal, the area anomalous dimensions are zero, the non-global logarithms are those of a rigid boundary and the Milan factor is universal. None of these properties hold for existing sequential recombination algorithms, nor for cone algorithms with split--merge steps, such as SISCone. They are however the identifying characteristics of the collinear unsafe plain ``iterative cone'' algorithm, for which the anti-k_t algorithm provides a natural, fast, infrared and collinear safe replacement.
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            A Brief Introduction to PYTHIA 8.1

            The PYTHIA program is a standard tool for the generation of high-energy collisions, comprising a coherent set of physics models for the evolution from a few-body hard process to a complex multihadronic final state. It contains a library of hard processes and models for initial- and final-state parton showers, multiple parton-parton interactions, beam remnants, string fragmentation and particle decays. It also has a set of utilities and interfaces to external programs. While previous versions were written in Fortran, PYTHIA 8 represents a complete rewrite in C++. The current release is the first main one after this transition, and does not yet in every respect replace the old code. It does contain some new physics aspects, on the other hand, that should make it an attractive option especially for LHC physics studies.
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              Longitudinally-invariant k⊥-clustering algorithms for hadron-hadron collisions

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                Author and article information

                Journal
                The European Physical Journal C
                Eur. Phys. J. C
                Springer Nature
                1434-6044
                1434-6052
                September 2015
                September 9 2015
                September 2015
                : 75
                : 9
                Article
                10.1140/epjc/s10052-015-3587-2
                4cea4864-93d9-46f7-9d16-f07fb4e2e0e0
                © 2015
                History

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