English

Stringy origin of diboson and dijet excesses at the LHC

High Energy Physics - Phenomenology 2015-09-30 v3 High Energy Physics - Theory

Abstract

Very recently, the ATLAS and CMS collaborations reported diboson and dijet excesses above standard model expectations in the invariant mass region of 1.8 -2.0 TeV. Interpreting the diboson excess of events in a model independent fashion suggests that the vector boson pair production searches are best described by WZ or ZZ topologies, because states decaying into W^+W^- pairs are strongly constrained by semileptonic searches. Under the assumption of a low string scale, we show that both the diboson and dijet excesses can be steered by an anomalous U(1) field with very small coupling to leptons. The Drell-Yan bounds are then readily avoided because of the leptophobic nature of the massive Z' gauge boson. The non-negligible decay into ZZ required to accommodate the data is a characteristic footprint of intersecting D-brane models, wherein the Landau-Yang theorem can be evaded by anomaly-induced operators involving a longitudinal Z. The model presented herein can be viewed purely field-theoretically, although it is particularly well motivated from string theory. Should the excesses become statistically significant at the LHC13, the associated Z\gamma{} topology would become a signature consistent only with a stringy origin.

Keywords

Cite

@article{arxiv.1507.05299,
  title  = {Stringy origin of diboson and dijet excesses at the LHC},
  author = {Luis A. Anchordoqui and Ignatios Antoniadis and Haim Goldberg and Xing Huang and Dieter Lust and Tomasz R. Taylor},
  journal= {arXiv preprint arXiv:1507.05299},
  year   = {2015}
}

Comments

References added. To be published in PLB