Gravitino phenomenology and cosmological implications of supergravity


Autoria(s): Ferrantelli, Andrea
Contribuinte(s)

Helsingin yliopisto, matemaattis-luonnontieteellinen tiedekunta, fysiikan laitos

Helsingfors universitet, matematisk-naturvetenskapliga fakulteten, institutionen för fysik

University of Helsinki, Faculty of Science, Department of Physics

Data(s)

27/01/2010

Resumo

In this thesis we consider the phenomenology of supergravity, and in particular the particle called "gravitino". We begin with an introductory part, where we discuss the theories of inflation, supersymmetry and supergravity. Gravitino production is then investigated into details, by considering the research papers here included. First we study the scattering of massive W bosons in the thermal bath of particles, during the period of reheating. We show that the process generates in the cross section non trivial contributions, which eventually lead to unitarity breaking above a certain scale. This happens because, in the annihilation diagram, the longitudinal degrees of freedom in the propagator of the gauge bosons disappear from the amplitude, by virtue of the supergravity vertex. Accordingly, the longitudinal polarizations of the on-shell W become strongly interacting in the high energy limit. By studying the process with both gauge and mass eigenstates, it is shown that the inclusion of diagrams with off-shell scalars of the MSSM does not cancel the divergences. Next, we approach cosmology more closely, and study the decay of a scalar field S into gravitinos at the end of inflation. Once its mass is comparable to the Hubble rate, the field starts coherent oscillations about the minimum of its potential and decays pertubatively. We embed S in a model of gauge mediation with metastable vacua, where the hidden sector is of the O'Raifeartaigh type. First we discuss the dynamics of the field in the expanding background, then radiative corrections to the scalar potential V(S) and to the Kähler potential are calculated. Constraints on the reheating temperature are accordingly obtained, by demanding that the gravitinos thus produced provide with the observed Dark Matter density. We modify consistently former results in the literature, and find that the gravitino number density and T_R are extremely sensitive to the parameters of the model. This means that it is easy to account for gravitino Dark Matter with an arbitrarily low reheating temperature.

Väitöskirjatutkimus on kosmologiasta ja hiukkasfysiikasta. Puhutaan teoreettisesta fysiikasta: inflaatiosta, supergravitaatiosta, gravitino pimeästä aineesta.

Identificador

URN:ISBN:978-952-10-6057-1

http://hdl.handle.net/10138/23219

Idioma(s)

en

Publicador

Helsingin yliopisto

Helsingfors universitet

University of Helsinki

Relação

URN:ISBN:978-952-10-6056-4

Direitos

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Palavras-Chave #teoreettinen fysiikka
Tipo

Väitöskirja (artikkeli)

Doctoral dissertation (article-based)

Doktorsavhandling (sammanläggning)

Text