INFLATIONARY COSMOLOGY FROM NONCOMMUTATIVE GEOMETRY

Author:

LIZZI F.12,MIELE G.12,SPARANO G.12,MANGANO G.324

Affiliation:

1. Dipartimento di Scienze Fisiche, Universita di Napoli — Federico II - Napoli, Italy

2. INFN, Sezione di Napoli, Mostra D’Oltremare Pad. 20, 80125, Napoli, Italy

3. Dipartimento di Scienze Fisiche, Università di Napoli – Federico II – Napoli, Italy

4. Department of Applied Mathematics and Theoretical Physics, Silver Street, CB3 9EW, Cambridge, UK

Abstract

In the framework of the Connes-Lott model based on noncommutative geometry, the basic features of a gauge theory in the presence of gravity are reviewed, in order to show the possible physical relevance of this scheme for inflationary cosmology. These models naturally contain at least two scalar fields, interacting with each other whenever more than one fermion generation is assumed. In this paper we propose to investigate the behavior of these two fields (one of which represents the distance between the copies of a two-sheeted space-time) in the early stages of the universe evolution. In particular the simplest Abelian model, which preserves the main characteristics of more complicate gauge theories, is considered and the corresponding inflationary dynamics is studied. We find that a chaotic inflation is naturally favored, leading to a field configuration in which no symmetry breaking occurs and the final distance between the two sheets of space-time is smaller the greater the number of e fold in each sheet.

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

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