Superconformal symmetry, NMSSM, and inflation

Sergio Ferrara, Renata Kallosh, Andrei Linde, Alessio Marrani, and Antoine Van Proeyen
Phys. Rev. D 83, 025008 – Published 10 January 2011

Abstract

We identify a particularly simple class of supergravity models describing superconformal coupling of matter to supergravity. In these models, which we call the canonical superconformal supergravity models, the kinetic terms in the Jordan frame are canonical, and the scalar potential is the same as in the global theory. The pure supergravity part of the total action has a local Poincaré supersymmetry, whereas the chiral and vector multiplets coupled to supergravity have a larger local superconformal symmetry. The scale-free globally supersymmetric theories, such as the NMSSM with a scale-invariant superpotential, can be naturally embedded into this class of theories. After the supergravity embedding, the Jordan frame scalar potential of such theories remains scale free; it is quartic, it contains no mass terms, no nonrenormalizable terms, no cosmological constant. The local superconformal symmetry can be broken by additional terms, which, in the small field limit, are suppressed by the gravitational coupling. This can be achieved by introducing the nonminimal scalar-curvature coupling, and by taking into account interactions with a hidden sector. In this approach, the smallness of the mass parameters in the NMSSM may be traced back to the original superconformal invariance. This allows one to address the μ problem and the cosmological domain wall problem in this model, and to implement chaotic inflation in the NMSSM. We discuss the gravitino problem in the NMSSM inflation, as well as the possibility to obtain a broad class of new versions of chaotic inflation in supergravity.

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  • Received 15 September 2010

DOI:https://doi.org/10.1103/PhysRevD.83.025008

© 2011 The American Physical Society

Authors & Affiliations

Sergio Ferrara1,2, Renata Kallosh3, Andrei Linde3, Alessio Marrani3, and Antoine Van Proeyen4

  • 1Physics Department, Theory Unit, CERN, CH 1211, Geneva 23, Switzerland
  • 2INFN - Laboratori Nazionali di Frascati, Via Enrico Fermi 40, 00044 Frascati, Italy
  • 3Department of Physics, Stanford University, Stanford, California 94305, USA
  • 4Instituut voor Theoretische Fysica, Katholieke Universiteit Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium

See Also

Jordan frame supergravity and inflation in the NMSSM

Sergio Ferrara, Renata Kallosh, Andrei Linde, Alessio Marrani, and Antoine Van Proeyen
Phys. Rev. D 82, 045003 (2010)

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Vol. 83, Iss. 2 — 15 January 2011

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