English

Dark photon production through positron annihilation in beam-dump experiments

High Energy Physics - Experiment 2018-08-01 v2 High Energy Physics - Phenomenology

Abstract

High energy positron annihilation is a viable mechanism to produce dark photons (AA^\prime). This reaction plays a significant role in beam-dump experiments using experiments using multi-GeV electron-beams on thick targets by enhancing the sensitivity to AA^\prime production. The positrons produced by the electromagnetic shower can produce an AA^\prime via non-resonant (e++eγ+Ae^+ + e^- \to \gamma + A^\prime) and resonant (e++eAe^+ + e^- \to A^\prime) annihilation on atomic electrons. For visible decays, the contribution of resonant annihilation results in a larger sensitivity with respect to limits derived by the commonly used AA^\prime-strahlung in certain kinematic regions. When included in the evaluation of the E137 beam-dump experiment reach, positron annihilation pushes the current limit on ε\varepsilon downwards by a factor of two in the range 33 MeV/c2<mA<120^2<m_{A^\prime}<120 MeV/c2^2.

Keywords

Cite

@article{arxiv.1802.03794,
  title  = {Dark photon production through positron annihilation in beam-dump experiments},
  author = {L. Marsicano and M. Battaglieri and M. Bondi' and C. D. R. Carvajal and A. Celentano and M. De Napoli and R. De Vita and E. Nardi and M. Raggi and P. Valente},
  journal= {arXiv preprint arXiv:1802.03794},
  year   = {2018}
}

Comments

9 pages, 7 figures

R2 v1 2026-06-23T00:18:30.118Z