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Exclusion Limits on Minimal Anomaly Free \(\mathrm {U}(1)\) Extensions of the Standard Model

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Abstract

We take into account a class of minimal \(\mathrm {U}(1)\) extensions of the Standard Model (SM) which are free from all types of gauge anomalies. In our setup, the particle spectrum of the SM is extended by a complex scalar whose vacuum expectation value breaks the extra \(\mathrm {U}(1)\) symmetry and three generations of heavy right-handed neutrinos that are required for anomaly cancellation. Using the latest LHC data and electroweak precision test measurements, we find that the parameter space of these models are heavily constrained. We classify various \(\mathrm {U}(1)\) extensions by a single parameter \(\kappa \) and present our exclusion limits model independently.

Keywords

  • \(\mathrm {U(1)}\) extension
  • Anomaly free
  • \(Z'\)
  • LHC
  • Exclusion

T. Mandal—Speaker.

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Fig. 55.1

Notes

  1. 1.

    Talk presented at the XXII DAE-BRNS High Energy Physics Symposium, Delhi University, December 12–16, 2016.

References

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  4. P. Anastasopoulos, M. Bianchi, E. Dudas, E. Kiritsis, JHEP 0611, 057 (2006). https://doi.org/10.1088/1126-6708/2006/11/057, arXiv:hep-th/0605225

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Correspondence to Tanumoy Mandal .

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Mandal, T., Ekstedt, A., Enberg, R., Ingelman, G., Löfgren, J. (2018). Exclusion Limits on Minimal Anomaly Free \(\mathrm {U}(1)\) Extensions of the Standard Model. In: Naimuddin, M. (eds) XXII DAE High Energy Physics Symposium . Springer Proceedings in Physics, vol 203. Springer, Cham. https://doi.org/10.1007/978-3-319-73171-1_55

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