English

New phenomena in the standard no-scale supergravity model

High Energy Physics - Phenomenology 2009-09-25 v1

Abstract

We revisit the no-scale mechanism in the context of the simplest no-scale supergravity extension of the Standard Model. This model has the usual five-dimensional parameter space plus an additional parameter ξ3/2m3/2/m1/2\xi_{3/2}\equiv m_{3/2}/m_{1/2}. We show how predictions of the model may be extracted over the whole parameter space. A necessary condition for the potential to be stable is StrM4>0{\rm Str}{\cal M}^4>0, which is satisfied if m3/2\lsim2mq~\bf m_{3/2}\lsim2 m_{\tilde q}. Order of magnitude calculations reveal a no-lose theorem guaranteeing interesting and potentially observable new phenomena in the neutral scalar sector of the theory which would constitute a ``smoking gun'' of the no-scale mechanism. This new phenomenology is model-independent and divides into three scenarios, depending on the ratio of the weak scale to the vev at the minimum of the no-scale direction. We also calculate the residual vacuum energy at the unification scale (C0m3/24C_0\, m^4_{3/2}), and find that in typical models one must require C0>10C_0>10. Such constraints should be important in the search for the correct string no-scale supergravity model. We also show how specific classes of string models fit within this framework.

Keywords

Cite

@article{arxiv.hep-ph/9409223,
  title  = {New phenomena in the standard no-scale supergravity model},
  author = {S. Kelley and J. Lopez and D. Nanopoulos and A. Zichichi},
  journal= {arXiv preprint arXiv:hep-ph/9409223},
  year   = {2009}
}

Comments

11pages, LaTeX, 1 figure (included), CERN-TH.7433/94

R2 v1 2026-07-22T14:22:23.783Z