Vector and Axial-vector resonances in composite models of the Higgs boson
arXiv:1605.01363 · doi:10.1007/JHEP11(2016)076
Abstract
We provide a non-linear realisation of composite Higgs models in the context of the SU(4)/Sp(4) symmetry breaking pattern, where the effective Lagrangian of the spin-0 and spin-1 resonances is constructed via the CCWZ prescription using the Hidden Symmetry formalism. We investigate the EWPT constraints by accounting the effects from reduced Higgs couplings and integrating out heavy spin-1 resonances. This theory emerges from an underlying theory of gauge interactions with fermions, thus first principle lattice results predict the massive spectrum in composite Higgs models. This model can be used as a template for the phenomenology of composite Higgs models at the LHC and at future 100 TeV colliders, as well as for other application. In this work, we focus on the formalism for spin-1 resonances and their bounds from di-lepton and di-boson searches at the LHC.
52 pages, 10 figures, 3 tables; v2 correct definition for G-parity, update fermion currents and C-parity in table II, and add appendix B; v3 final version accepted by JHEP
References in corpus (10)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Beyond the Minimal Composite Higgs Model
- Gauge theories of Partial Compositeness: Scenarios for Run-II of the LHC
- Fundamental Composite Higgs Dynamics on the Lattice: SU(2) with Two Flavors
- A Systematic Approach to the SILH Lagrangian
- On the Interpretation of Top Partners Searches
- Composite Dark Matter and LHC Interplay
- Framework for Model Independent Analyses of Multiple Extra Quark Scenarios
- Top-Quark Initiated Processes at High-Energy Hadron Colliders
- Mass Reach Scaling for Future Hadron Colliders
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- Phase transition and gravitational waves in maximally symmetric composite Higgs model
- Multi-boson splashes at future colliders from electroweak compositeness
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