Published November 2014 | Version v1
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The elusive gluon

  • 1. Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)
  • 2. Granada Univ. (Spain). Dept. de Fisica Teorica y del Cosmos
  • 3. Granada Univ. (Spain). CAFPE
  • 4. Istituto Nazionale di Fisica Nucleare, Trieste (Italy)
  • 5. International School for Advanced Studies, Trieste (Italy)
  • 6. Weizmann Institute of Science, Rehovot (Israel). Dept. of Particle Physics and Astrophysics
  • 7. European Organization for Nuclear Research (CERN), Geneva (Switzerland)

Description

We study the phenomenology of vector resonances in the context of natural composite Higgs models. A mild hierarchy between the fermionic partners and the vector resonances can be expected in these models based on the following arguments. Both direct and indirect (electroweak and flavor precision) constraints on fermionic partners are milder than the ones on spin one resonances. Also the naturalness pressure coming from the top partners is stronger than that induced by the gauge partners. This observation implies that the search strategy for vector resonances at the LHC needs to be modified. In particular, we point out the importance of heavy gluon decays (or other vector resonances) to top partner pairs that were overlooked in previous experimental searches at the LHC. These searches focused on simplified benchmark models in which the only new particle beyond the Standard Model was the heavy gluon. It turns out that, when kinematically allowed, such heavy-heavy decays make the heavy gluon elusive, and the bounds on its mass can be up to 2 TeV milder than in the simpler models considered so far for the LHC14. We discuss the origin of this difference and prospects for dedicated searches.

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Additional details

Publishing Information

Imprint Pagination
33 p.
ISSN
0418-9833
Report number
DESY--14-213