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Long-lived, colour-triplet scalars from unnaturalness
被引:0
|作者:
James Barnard
Peter Cox
Tony Gherghetta
Andrew Spray
机构:
[1] The University of Melbourne,ARC Centre of Excellence for Particle Physics at the Terascale, School of Physics
[2] University of Minnesota,School of Physics and Astronomy
[3] Center for Theoretical Physics of the Universe,undefined
[4] Institute for Basic Science (IBS),undefined
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关键词:
Beyond Standard Model;
Technicolor and Composite Models;
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摘要:
Long-lived, colour-triplet scalars are a generic prediction of unnatural, or split, composite Higgs models where the spontaneous global-symmetry breaking scale f ≳ 10 TeV and an unbroken SU(5) symmetry is preserved. Since the triplet scalars are pseudo NambuGoldstone bosons they are split from the much heavier composite-sector resonances and are the lightest exotic, coloured states. This makes them ideal to search for at colliders. Due to discrete symmetries the triplet scalar decays via a dimension-six term and given the large suppression scale f is often metastable. We show that existing searches for collider-stable R-hadrons from Run-I at the LHC forbid a triplet scalar mass below 845 GeV, whereas with 300 fb−1 at 13 TeV triplet scalar masses up to 1.4 TeV can be discovered. For shorter lifetimes displaced-vertex searches provide a discovery reach of up to 1.8 TeV. In addition we present exclusion and discovery reaches of future hadron colliders as well as indirect limits that arise from modifications of the Higgs couplings.
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