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February 12, 2026Journal of High Energy Physics0 citationsOpen Access

Quark-universal U(1) breaking scalar at the LHC

LALorin ArmbrusterBDBogdan A. DobrescuFYFelix Yu

Key Points

  • This research aims to identify the production mechanisms and decay modes of a new scalar boson associated with a U(1) gauge symmetry.
  • Analyzed production processes at the LHC involving a new scalar boson and Z′ boson.
  • Considered cases where the Z′ boson is leptophobic and quarks share identical charges under U(1).
  • Explored decays into four jets and two photons.
  • Assessed the implications of mixing with the Standard Model Higgs boson.
  • Identified scalar production via Z′ boson associated production and Z′ boson fusion.
  • Noted the potential for gluon fusion production if mixing with the Higgs occurs.
  • Highlighted diphoton resonance as a likely discovery mode for the scalar.

Abstract

A bstract If the quarks or leptons are charged under a new U(1) gauge symmetry, then besides a Z′ boson there must exist at least one new boson whose decay products include Standard Model particles. In the case of a minimal symmetry breaking sector, that new boson is a scalar ϕ that couples to the Z′ boson as well as to the new fermions required to cancel the U(1) gauge anomalies. The scalar may be produced at the Large Hadron Collider (LHC) in association with a Z′ boson, or through Z′ boson fusion, while its decays are typically into four jets or two photons. We analyze in detail the case where the Z′ boson is leptophobic, and all the quarks have the same charge under the new U(1). If ϕ mixes with the Standard Model Higgs boson, then the new scalar can also be produced via gluon fusion, and the discovery mode is likely to be a diphoton resonance.

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Cite This Study

Armbruster et al. (2026) studied this question.

synapsesocial.com/papers/698d6d9f5be6419ac0d52b36https://doi.org/10.1007/jhep02(2026)093
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