English

Supersymmetry Tests at Fermilab: A Proposal

High Energy Physics - Phenomenology 2009-08-25 v1

Abstract

We compute the number of trilepton events to be expected at Fermilab as a result of the reaction ppˉχ1±χ20Xp\bar p\to\chi^\pm_1\chi^0_2X, where χ1±\chi^\pm_1 is the lightest chargino and χ20\chi^0_2 is the next-to-lightest neutralino. This signal is expected to have very little background and is the best prospect for supersymmetry detection at Fermilab if the gluino and squarks are beyond reach. We evaluate our expressions for all points in the allowed parameter space of two basic supergravity models: (i) the minimal SU(5)SU(5) supergravity model including the severe constraints from proton decay and a not too young Universe, and (ii) a recently proposed no-scale flipped SU(5)SU(5) supergravity model. We study the plausible experimental scenaria and conclude that a large portion of the parameter spaces of these models could be explored with 100\ipb100\ipb of integrated luminosity. In the minimal SU(5)SU(5) supergravity model chargino masses up to 9095\GeV90-95\GeV could be probed. In the no-scale flipped model it should be possible to probe some regions of parameter space with mχ1±\lsim200\GeVm_{\chi^\pm_1}\lsim200\GeV, therefore possibly doubling the reach of LEPII for chargino and neutralino (since mχ20mχ1±m_{\chi^0_2}\approx m_{\chi^\pm_1}) masses. In both models such probes would indirectly explore gluino masses much beyond the reach of Fermilab.

Keywords

Cite

@article{arxiv.hep-ph/9211286,
  title  = {Supersymmetry Tests at Fermilab: A Proposal},
  author = {J. Lopez and D. Nanopoulos and X. Wang and A. Zichichi},
  journal= {arXiv preprint arXiv:hep-ph/9211286},
  year   = {2009}
}

Comments

13 pages plus 14 postscript figures (not included)

R2 v1 2026-07-22T14:16:05.748Z