Scattering of Goldstone Bosons and resonance production in a Composite Higgs model on the lattice
arXiv:2012.09761 · doi:10.1007/JHEP04(2021)117
Abstract
We calculate the coupling between a vector resonance and two Goldstone bosons in gauge theory with Dirac fermions in the fundamental representation. The considered theory can be used to construct a minimal Composite Higgs models. The coupling is related to the width of the vector resonance and we determine it by simulating the scattering of two Goldstone bosons where the resonance is produced. The resulting coupling is , not far from in QCD. This is the first lattice calculation of the resonance properties for a minimal UV completion. This coupling controls the production cross section of the lightest expected resonance at the LHC and enters into other tests of the Standard Model, from Vector Boson Fusion to electroweak precision tests. Our prediction is crucial to constrain the model using lattice input and for understanding the behavior of the vector meson production cross section as a function of the underlying gauge theory. We also extract the coupling assuming the vector-dominance and find that this phenomenological estimate slightly overestimates the value of the coupling.
16 pages, 8 figures - v2: minor changes, version accepted for publication
References in corpus (5)
Cited by in corpus (6)
- Lattice studies of the gauge theory with two fundamental and three antisymmetric Dirac fermions
- Low-energy effective description of dark theories
- Singlet channel scattering in a Composite Higgs model on the lattice
- Yang-Mills theories on the lattice: scale setting and topology
- Towards top-down holographic composite Higgs: minimal coset from maximal supergravity
- Toward minimal composite Higgs models from regular geometries in bottom-up holography