Résumé
We study the constraints on the parameter space of the supersymmetric standard model extended by a gauge singlet, which arise from the absence of global minima of the effective potential with slepton or squark vevs. Particular attention is paid to the so-called “UFB” directions in field space, which are
F-flat in the MSSM. Although these directions are no longer
F-flat in the (M+1)SSM, we show that the corresponding MSSM-like constraints on
m
0/
M
1/2 apply also to the (M+1)SSM. The net effect of all constraints on the parameter space are more dramatic than in the MSSM. We discuss the phenomenological implications of these constraints.