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Composite Higgs model at a conformal fixed point

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arxiv 1512.02576 v2 pith:4CL7VYXM submitted 2015-12-08 hep-ph hep-lat

classification hep-phhep-lat
keywords massflavorsmodelsystemconformalfermionsfixedhadronic
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We propose to construct a chirally broken model based on the infrared fixed point of a conformal system by raising the mass of some flavors while keeping the others massless. In the infrared limit the massive fermions decouple and the massless fermions break chiral symmetry. The running coupling of this system "walks" and the energy range of walking can be tuned by the mass of the heavy flavors. Renormalization group considerations predict that the spectrum of such a system shows hyperscaling. We have studied a model with four light and eight heavy flavors coupled to SU(3) gauge fields and verified the above expectations. We determined the mass of several hadronic states and found that some of them are in the 2-3 TeV range if the scale is set by the pseudoscalar decay constant $F_\pi \approx 250$ GeV. The $0^{++}$ scalar state behaves very differently from the other hadronic states. In most of our simulations it is nearly degenerate with the pion and we estimate its mass to be less than half of the vector resonance mass.

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  1. Holographic analysis of near-conformal dynamics and light dilaton

    hep-ph 2025-04 conditional novelty 7.0 of 10

    In bottom-up holographic models of near-conformal gauge theories, a parametrically light dilaton exists only for nearly Neumann infrared boundary conditions, and this persists when a full ultraviolet RG flow is included.

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