Complex Linear Multiplets and Local Supersymmetry Breaking
arXiv:2112.15172 · doi:10.1007/JHEP02(2022)092
Abstract
We study supersymmetry breaking from a complex linear superfield coupled to 4D N=1 supergravity. The theory has two classically decoupled vacua, one supersymmetric and one with broken and intrinsically non-linear supersymmetry. Depending on the values of the parameters the scalar potential can lead to no-scale Minkwoski or a stable de Sitter or anti-de Sitter vacuum. We also provide a dual description of the system in terms of a nilpotent chiral superfield and a standard chiral coupled to supergravity.
37 pages
References in corpus (9)
- Higher-Derivative Chiral Superfield Actions Coupled to N=1 Supergravity
- Emerging Potentials in Higher-Derivative Gauged Chiral Models Coupled to N=1 Supergravity
- Open problems on classical de Sitter solutions
- Mass Formulae for Broken Supersymmetry in Curved Space-Time
- Inflation in supergravity without Kahler potential
- Complex Linear Effective Theory and Supersymmetry Breaking Vacua
- Complex linear superfields, Supercurrents and Supergravities
- Supergravitational Heterotic Galileons
- Aether SUSY breaking: Can aether be alternative to F-term SUSY breaking?