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      CheckMATE: Confronting your favourite new physics model with LHC data

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      Computer Physics Communications
      Elsevier BV

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          A Large Mass Hierarchy from a Small Extra Dimension

          We propose a new higher-dimensional mechanism for solving the Hierarchy Problem. The Weak scale is generated from a large scale of order the Planck scale through an exponential hierarchy. However, this exponential arises not from gauge interactions but from the background metric (which is a slice of AdS_5 spacetime). This mechanism relies on the existence of only a single additional dimension. We demonstrate a simple explicit example of this mechanism with two three-branes, one of which contains the Standard Model fields. The experimental consequences of this scenario are new and dramatic. There are fundamental spin-2 excitations with mass of weak scale order, which are coupled with weak scale as opposed to gravitational strength to the standard model particles. The phenomenology of these models is quite distinct from that of large extra dimension scenarios; none of the current constraints on theories with very large extra dimensions apply.
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            Dynamics of spontaneous symmetry breaking in the Weinberg-Salam theory

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              FastJet user manual

              FastJet is a C++ package that provides a broad range of jet finding and analysis tools. It includes efficient native implementations of all widely used 2-to-1 sequential recombination jet algorithms for pp and e+e- collisions, as well as access to 3rd party jet algorithms through a plugin mechanism, including all currently used cone algorithms. FastJet also provides means to facilitate the manipulation of jet substructure, including some common boosted heavy-object taggers, as well as tools for estimation of pileup and underlying-event noise levels, determination of jet areas and subtraction or suppression of noise in jets.
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                Author and article information

                Journal
                Computer Physics Communications
                Computer Physics Communications
                Elsevier BV
                00104655
                February 2015
                February 2015
                : 187
                :
                : 227-265
                Article
                10.1016/j.cpc.2014.10.018
                a0aa0ec3-d105-48d5-8a09-aa512dbe7778
                © 2015
                History

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