English

Consequences of Supergravity with Gauged $\rm U(1)_R$ Symmetry

High Energy Physics - Phenomenology 2009-10-08 v1 High Energy Physics - Theory

Abstract

The structure of gauged R supergravity Lagrangians is reviewed, and we consider models with a hidden sector plus light fields of the MSSM. A simple potential for the hidden sector is presented which has a global minimum with zero cosmological constant and spontaneously broken SUSY and R-symmetry. The U(1)R\rm U(1)_R vector multiplet acquires a Planck scale mass through the Higgs mechanism, and it decouples at low energy. Due to very interesting cancellations, the U(1)R\rm U(1)_R D-terms also drop out at low energy. Thus no direct effects of the gauging of R-symmetry remain in the low energy effective Lagrangian, and this result is model independent, requiring only that R-symmetry be broken at the Planck scale and <D>=0<D> = 0, where DD is the auxiliary field of the U(1)R\rm U(1)_R vector multiplet. The low energy theory is fairly conventional with soft SUSY breaking terms for the MSSM fields. As a remnant of the gauging of R-symmetry, it also contains light fields, some required to cancel R-anomalies and others from the hidden sector.

Keywords

Cite

@article{arxiv.hep-ph/9507397,
  title  = {Consequences of Supergravity with Gauged $\rm U(1)_R$ Symmetry},
  author = {Diego J. Castano and Daniel Z. Freedman and Cristina Manuel},
  journal= {arXiv preprint arXiv:hep-ph/9507397},
  year   = {2009}
}

Comments

36 pages, plain LaTeX, all macros included, no figures