2015Journal of High Energy PhysicsOpen access

A new mechanism of realizing inflationary universe with recourse to backreaction of quantized free fields — Inflation without inflaton —

Yoshinobu Habara, Hikaru Kawai, Masao Ninomiya

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Abstract

It is shown that the inflationary era in early universe is realized due to the effect of backreaction of quantized matter fields. In fact we start by quantizing a free scalar field in the Friedmann-Robertson-Walker space-time, and the field is fluctuating quantum mechanically around the bottom of the mass potential. We then obtain the vacuum expectation value of the energy density of the scalar field as a functional of the scale factor a(t) of the universe. By plugging it into the Einstein equation, a self-consistent equation is established in which the matter fields determine the time evolution of the universe. We solve this equation by setting few conditions and find the following solution: the universe expands à la de Sitter with e-folding number ≳ 60 and then it turns to shrink with a decreasing Hubble parameter H(t) which rapidly goes to zero.

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It is shown that the inflationary era in early universe is realized due to the effect of backreaction of quantized matter fields. In fact we start by quantizing a free scalar field in the Friedmann-Robertson-Walker space-time, and the field is fluctuating quantum mechanically around the bottom of the mass potential. We then obtain the vacuum expectation value of the energy density of the scalar field as a functional of the scale factor a(t) of the universe. By plugging it into the Einstein equation, a self-consistent equation is established in which the matter fields determine the time evolution of the universe. We solve this equation by setting few conditions and find the following solution: the universe expands à la de Sitter with e-folding number ≳ 60 and then it turns to shrink with a decreasing Hubble parameter H(t) which rapidly goes to zero.

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Available abstract

It is shown that the inflationary era in early universe is realized due to the effect of backreaction of quantized matter fields. In fact we start by quantizing a free scalar field in the Friedmann-Robertson-Walker space-time, and the field is fluctuating quantum mechanically around the bottom of the mass potential. We then obtain the vacuum expectation value of the energy density of the scalar field as a functional of the scale factor a(t) of the universe. By plugging it into the Einstein equation, a self-consistent equation is established in which the matter fields determine the time evolution of the universe. We solve this equation by setting few conditions and find the following solution: the universe expands à la de Sitter with e-folding number ≳ 60 and then it turns to shrink with a decreasing Hubble parameter H(t) which rapidly goes to zero.

Key concepts: Inflaton, Physics, De Sitter universe, Scale factor (cosmology), Scalar field, Universe, Inflation (cosmology), Hubble's law

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