Publication | Open Access
Strongly interacting dynamics and the search for new physics at the LHC
128
Citations
32
References
2016
Year
New PhysicsRich Resonance SpectrumEngineeringPhysicsAdditional ResonancesNatural SciencesElectroweak InteractionParticle PhysicsApplied PhysicsQuantum Field TheoryCollider PhysicExotic StateWeak InteractionTheoretical High-energy PhysicTheoretical PhysicsGauge Theory
We present results for the spectrum of a strongly interacting SU(3) gauge theory with ${N}_{f}=8$ light fermions in the fundamental representation. Carrying out nonperturbative lattice calculations at the lightest masses and largest volumes considered to date, we confirm the existence of a remarkably light singlet scalar particle. We explore the rich resonance spectrum of the 8-flavor theory in the context of the search for new physics beyond the standard model at the Large Hadron Collider (LHC). Connecting our results to models of dynamical electroweak symmetry breaking, we estimate the vector resonance mass to be about 2 TeV with a width of roughly 450 GeV, and predict additional resonances with masses below $\ensuremath{\sim}3\text{ }\text{ }\mathrm{TeV}$.
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