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Автор E Gunzig
Автор V Faraoni
Автор A Figueiredo
Автор T M Rocha Filho
Автор L Brenig
Дата выпуска 2000-04-21
dc.description A spatially flat FLRW universe (motivated by inflation) is studied; by a dimensional reduction of the dynamical equations of scalar field cosmology, it is demonstrated that a spatially flat universe cannot exhibit chaotic behaviour. The result holds when the source of gravity is a non-minimally coupled scalar field, for any self-interaction potential and for arbitrary values of the coupling constant with the Ricci curvature. The phase space of the dynamical system is studied, and regions inaccessible to the evolution are found. The topology of the forbidden regions, their dependence on the parameters, the fixed points and their stability character, and the asymptotic behaviour of the solutions are studied. New attractors are found, in addition to those known from the minimal coupling case, certain exact solutions are presented and the implications for inflation are discussed. The equation of state is not prescribed a priori , but rather is deduced self-consistently from the field equations.
Формат application.pdf
Издатель Institute of Physics Publishing
Название The dynamical system approach to scalar field cosmology
Тип paper
DOI 10.1088/0264-9381/17/8/304
Electronic ISSN 1361-6382
Print ISSN 0264-9381
Журнал Classical and Quantum Gravity
Том 17
Первая страница 1783
Последняя страница 1814
Выпуск 8

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