arXiv:1703.02917·v2·High Energy Physics — Phenomenology
General No-Scale Supergravity: An - Tale
Dingli Hu🇺🇸 · Tianjun Li🇨🇳 · Adam Lux🇺🇸 · James A. Maxin🇺🇸 · Dimitri V. Nanopoulos🇺🇸
Abstract
We study the grand unification model flipped with additional vector-like particle multiplets, or - for short, in the framework of General No-Scale Supergravity. In our analysis we allow the supersymmetry (SUSY) breaking soft terms to be generically non-zero, thereby extending the phenomenologically viable parameter space beyond the highly constrained one-parameter version of -. In this initial inquiry, the mSUGRA/CMSSM SUSY breaking terms are implemented. We find this easing away from the vanishing SUSY breaking terms enables a more broad mass range of vector-like particles, dubbed flippons, including flippons less than 1 TeV that could presently be observed at the LHC2, as well as a lighter gluino mass and SUSY spectrum overall. This presents heightened odds that the General No-Scale - viable parameter space can be probed at the LHC2. The phenomenology comprises both bino and higgsino dark matter, including a Higgs funnel region. Particle states emerging from the SUSY cascade decays are presented to experimentally distinguish amongst the diverse phenomenological regions.
Comments: 8 pages, 4 figures, 4 tables; Version accepted for publication in Physics Letters B