Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
1992-07-07
Phys.Lett.B291:255-262,1992
Physics
High Energy Physics
High Energy Physics - Phenomenology
12 pages plus 3 figures (not included); CERN-TH.6554/92, CTP-TAMU-49/92
Scientific paper
10.1016/0370-2693(92)91041-7
We show that within the framework of the minimal $SU(5)$ supergravity model, radiatively-induced electroweak symmetry breaking and presently available experimental lower bounds on nucleon decay, impose severe constraints on the available parameter space of the model which correspond to fine-tuning of the model parameters of over two orders of magnitude. Furthermore, a straightforward calculation of the cosmic relic density of neutralinos ($\chi$) gives $\Omega_\chi h^2\gg1$ for most of the allowed parameter space in this model, although small regions may still be cosmologically acceptable. We finally discuss how the {\it no-scale flipped $SU(5)$ supergravity model} avoids naturally the above troubles and thus constitutes a good candidate for the low-energy effective supergravity model.
Lopez Javier
Nanopoulos Dimitri
Zichichi Antonino
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