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arxiv: 0910.1128 · v3 · submitted 2009-10-06 · ✦ hep-th · gr-qc

Initial time singularities and admissible initial states for a system of coupled scalar fields

classification ✦ hep-th gr-qc
keywords initialsystemfieldscoupledspacestateadiabaticdiscuss
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We discuss the problem of initial states for a system of coupled scalar fields out of equilibrium in the one-loop approximation. The fields consist of classical background fields, taken constant in space, and quantum fluctuations. If the initial state is the adiabatic vacuum, i.e., the ground state of a Fock space of particle excitations that diagonalize the mass matrix, the energy-momentum tensor is infinite at t=0, its most singular part behaves as 1/t. When the system is coupled to gravity this presents a problem that we solve by a Bogoliubov transformation of the naive initial state. As a side result we also discuss the canonical formalism and the adiabatic particle number for such a system. Most of the formalism is presented for Minkowksi space. Embedding the system and its dynamics into a flat FRW universe is straightforward and we briefly address the essential modifications.

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