[Submitted on 3 May 2017] (cross-list from hep-ph)
Validity of the Weizsäcker-Williams Approximation and the Analysis of Beam Dump Experiments: Production of an axion, a dark photon, or a new axial-vector boson
Yu-Sheng Liu🇺🇸 · Gerald A. Miller🇺🇸
Beam dump experiments have been used to search for new particles, , with null results interpreted in terms of limits on masses and coupling constants . However these limits have been obtained by using approximations [including the Weizsäcker-Williams (WW) approximation] or Monte-Carlo simulations. We display methods to obtain the cross section and the resulting particle production rates without using approximations on the phase space integral or Monte-Carlo simulations. In our previous work we examined the case of the new scalar boson production; in this paper we explore all possible new spin-0 and spin-1 particles. We show that the approximations cannot be used to obtain accurate values of cross sections. The corresponding exclusion plots differ by substantial amounts when seen on a linear scale. Furthermore, a new region () of parameter space can be explored without using one of the common approximations, . We derive new expressions for the three photon decays of dark photon and four photon decays of new axial-vector bosons. As a result, the production cross section and exclusion region of different low mass () bosons are very different. Moreover, our method can be used as a consistency check for Monte-Carlo simulations.
- Comments:
- 21 pages, 9 figures. arXiv admin note: substantial text overlap with arXiv:1609.06781
- Subjects:
- High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Experiment (hep-ex); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
- arXiv:
- 1705.01633 [pdf]