Pure Gravity Mediation and Spontaneous B-L Breaking from Strong Dynamics
arXiv:1507.04467 · doi:10.1016/j.nuclphysb.2016.01.023
Abstract
In pure gravity mediation (PGM), the most minimal scheme for the mediation of supersymmetry (SUSY) breaking to the visible sector, soft masses for the standard model gauginos are generated at one loop rather than via direct couplings to the SUSY-breaking field. In any concrete implementation of PGM, the SUSY-breaking field is therefore required to carry nonzero charge under some global or local symmetry. As we point out in this note, a prime candidate for such a symmetry might be B-L, the Abelian gauge symmetry associated with the difference between baryon number B and lepton number L. The F-term of the SUSY-breaking field then not only breaks SUSY, but also B-L, which relates the respective spontaneous breaking of SUSY and B-L at a fundamental level. As a particularly interesting consequence, we find that the heavy Majorana neutrino mass scale ends up being tied to the gravitino mass, Lambda_N ~ m_3/2. Assuming nonthermal leptogenesis to be responsible for the generation of the baryon asymmetry of the universe, this connection may then explain why SUSY necessarily needs to be broken at a rather high energy scale, so that m_3/2 >~ 1000 TeV in accord with the concept of PGM. We illustrate our idea by means of a minimal model of dynamical SUSY breaking, in which B-L is identified as a weakly gauged flavor symmetry. We also discuss the effect of the B-L gauge dynamics on the superparticle mass spectrum as well as the resulting constraints on the parameter space of our model. In particular, we comment on the role of the B-L D-term.
25 pages, 1 figure
References in corpus (21)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Symmetries and Strings in Field Theory and Gravity
- Big Bang Nucleosynthesis Constraints on Hadronically and Electromagnetically Decaying Relic Neutral Particles
- Possible Signals of Wino LSP at the Large Hadron Collider
- Simply Unnatural Supersymmetry
- Spontaneous B-L Breaking as the Origin of the Hot Early Universe
- Leptogenesis via Axion Oscillations after Inflation
- Effects of reheating on leptogenesis
- The Polonyi Problem and Upper bound on Inflation Scale in Supergravity
- Peccei-Quinn Symmetry from Dynamical Supersymmetry Breaking
- Wino Dark Matter in light of the AMS-02 2015 Data
- Matter and Dark Matter from False Vacuum Decay
- WIMP Dark Matter from Gravitino Decays and Leptogenesis
- Inflation with Fayet-Iliopoulos Terms
- Why have supersymmetric particles not been observed?
- Anomaly Mediated Gaugino Mass and Path-Integral Measure
- Dynamical D-Terms in Supergravity
- Cosmological Selection of Multi-TeV Supersymmetry
- Limitation on Magnitude of -components
- Moduli Stabilization in Stringy ISS Models
Cited by in corpus (5)
- Unified Model of D-Term Inflation
- Inflation from High-Scale Supersymmetry Breaking
- Polonyi Inflation
- Standard Coupling Unification in SO(10), Hybrid Seesaw Neutrino Mass and Leptogenesis, Dark Matter, and Proton Lifetime Predictions
- Heavy Gravitino from Dynamical Generation of Right-Handed Neutrino Mass Scale, and Gravitational Waves