Supersymmetry and R-symmetry breaking in models with non-canonical Kahler potential
arXiv:0803.4163 · doi:10.1088/1126-6708/2008/05/022
Abstract
We analyze several aspects of R-symmetry and supersymmetry breaking in generalized O'Raifeartaigh models with non-canonical Kahler potential. Some conditions on the Kahler potential are derived in order for the non-supersymmetric vacua to be degenerate. We calculate the Coleman-Weinberg (CW) effective potential for general quiral non-linear sigma models and then study the 1-loop quantum corrections to the pseudo-moduli space. For R-symmetric models, the quadratic dependence of the CW potential with the ultraviolet cutoff scale disappears. We also show that the conditions for R-symmetry breaking are independent of this scale and remain unchanged with respect to those of canonical models. This is, R-symmetry can be broken when generic R-charge assignments to the fields are made, while it remains unbroken when only fields with R-charge 0 and 2 are present. We further show that these models can keep the runaway behavior of their canonical counterparts and also new runaway directions can be induced. Due to the runaway directions, the non-supersymmetric vacua is metastable.
19 pages, revised version with minor changes, references added, published in JHEP
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Cited by in corpus (6)
- Notes on SUSY and R-Symmetry Breaking in Wess-Zumino Models
- Comments on Gaugino Mass and Landscape of Vacua
- Two Loop R-Symmetry Breaking
- Superspace evaluation of the two-loop effective potential for the O'Raifeartaigh model
- Superspace approach to the renormalization of the O'Raifeartaigh model up to the second order in the LDE parameter
- Supergraph Approach in a Higher-order LDE Calculation of the Effective Potential for F-type Broken SUSY