Abstract

A new, strongly-coupled “dark” sector could be accessible to LHC searches now. These dark sectors consist of composites formed from constituents that are charged under the electroweak group and interact with the Higgs, but are neutral under Standard Model color. In these scenarios, the most promising target is the dark meson sector, consisting of dark vector-mesons as well as dark pions. In this paper we study dark meson production and decay at the LHC in theories that preserve a global SU(2) dark flavor symmetry. Dark pions — like the pions of QCD — can be pair-produced through resonant dark vector meson production, pp → ρD → πDπD, and decay in one of two distinct ways: “gaugephobic”, when {pi}_Dto f{overline{f}}^{prime } generally dominates; or “gaugephilic”, when πD → W + h, Z + h dominates once kinematically open. Unlike QCD, the decay πD0 → γγ is virtually absent due to the dark flavor symmetry. We recast a vast set of existing LHC searches to determine the current constraints on (and future opportunities for) dark meson production and decay. When {m}_{rho_D} is slightly heavier than 2{m}_{pi_D} and ρD±,0 kinetically mixes with the weak gauge bosons, the 8 TeV same-sign lepton search strategy sets the best bound, {m}_{pi_D} > 500 GeV. Yet, when only the ρD0 kinetically mixes with hypercharge, we find the strongest LHC bound is {m}_{pi_D} > 130 GeV, that is only slightly better than what LEP II achieved two decades ago. We find the relative insensitivity of LHC searches, especially at 13 TeV, can be blamed mainly on their penchant for high mass objects or large missing energy. Dedicated searches would undoubtedly yield substantially improved sensitivity. We provide a GitHub page to speed the implementation of these searches in future LHC analyses. Our findings for dark meson production and decay provide a strong motivation for model-independent searches of the form pp → A → B + C → SM SM + SM SM where the theoretical prejudice is for SM to be a 3rd generation quark or lepton, W, Z, or h.

Highlights

  • Context of vector-like fermions that transform under part of the SM group as well as under a new, strongly-coupled group with scales near or above the electroweak scale

  • These dark sectors consist of composites formed from constituents that are charged under the electroweak group and interact with the Higgs, but are neutral under Standard Model color

  • Our findings for dark meson production and decay provide a strong motivation for model-independent searches of the form pp → A → B + C → SM SM + SM SM where the theoretical prejudice is for SM to be a 3rd generation quark or lepton, W, Z, or h

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Summary

Phenomenological description of dark mesons

The dark meson interactions will be described below using a phenomenological lagrangian. In the language of vector-like confinement, all species symmetries are broken by Higgs interactions in the dark sector (either Yukawa couplings or higher-dimensional interactions). The first contribution contains the meson sector of the theory as it arises from the stronglycoupled dark sector: Lstrong =. It contains the kinetic terms of the vector (ρD) and pseudoscalar (πD) mesons, mass terms, and the interactions among these mesons. We will only consider the phenomenological consequences of the lightest triplet dark vector meson (ρaD) and the lightest triplet dark pion (πDa ). The NDA estimate of the coupling strength is given by

Kinetic mixing of ρD with SM
Dark pion decay to SM
Constraints from single production
Constraints on the dark pion coupling to SM
Resonant dark pion pair-production at LHC
Searching for taus
Generic multilepton searches
Same sign lepton searches
Additional searches
Conclusions
Full Text
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