Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons

In this work we shall introduce a theoretical framework comprised by a non-minimal coupled canonical scalar field, a non-minimal coupling to the Gauss-Bonnet invariant and a non-minimal kinetic coupling. This theoretical framework is basically a non-minimally coupled Einstein-Gauss-Bonnet theory wit...

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Main Authors: V.K. Oikonomou, F.P. Fronimos
Format: Article
Language:English
Published: Elsevier 2021-10-01
Series:Nuclear Physics B
Online Access:http://www.sciencedirect.com/science/article/pii/S0550321321002194
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spelling doaj-2c547a98a0dc4b19941ae2bae7f4f7872021-10-01T04:50:47ZengElsevierNuclear Physics B0550-32132021-10-01971115522Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitonsV.K. Oikonomou0F.P. Fronimos1Department of Physics, Aristotle University of Thessaloniki, Thessaloniki 54124, Greece; Laboratory for Theoretical Cosmology, Tomsk State University of Control Systems and Radioelectronics, 634050 Tomsk, (TUSUR), Russia; Tomsk State Pedagogical University, 634061 Tomsk, Russia; Corresponding author.Department of Physics, Aristotle University of Thessaloniki, Thessaloniki 54124, GreeceIn this work we shall introduce a theoretical framework comprised by a non-minimal coupled canonical scalar field, a non-minimal coupling to the Gauss-Bonnet invariant and a non-minimal kinetic coupling. This theoretical framework is basically a non-minimally coupled Einstein-Gauss-Bonnet theory with extra corrections of the form of a non-minimal kinetic coupling. In order to comply with the GW170817 event, we shall impose a constraint on the propagation speed of the primordial tensor perturbations that it is equal to that of light's in vacuum, and this constraint basically specifies the way that the scalar potential and the non-minimal couplings of the theory can be chosen. The whole theoretical framework, which belongs to the larger class of Horndeski theories, cannot yield viable results, due to the fact that the primordial gravitational wave speed is not equal to that of light's. Thus we study this theory by also imposing the constraint of having gravity wave speed equal to the light speed. We directly examine the inflationary phenomenology of our theoretical framework and by assuming the slow-roll conditions, we derived the equations of motion in such a way so that analytical results may be extracted. By using several well motivated models we demonstrate the framework leads to a viable phenomenology.http://www.sciencedirect.com/science/article/pii/S0550321321002194
collection DOAJ
language English
format Article
sources DOAJ
author V.K. Oikonomou
F.P. Fronimos
spellingShingle V.K. Oikonomou
F.P. Fronimos
Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons
Nuclear Physics B
author_facet V.K. Oikonomou
F.P. Fronimos
author_sort V.K. Oikonomou
title Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons
title_short Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons
title_full Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons
title_fullStr Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons
title_full_unstemmed Generalized Horndeski-like Einstein Gauss-Bonnet inflation with massless primordial gravitons
title_sort generalized horndeski-like einstein gauss-bonnet inflation with massless primordial gravitons
publisher Elsevier
series Nuclear Physics B
issn 0550-3213
publishDate 2021-10-01
description In this work we shall introduce a theoretical framework comprised by a non-minimal coupled canonical scalar field, a non-minimal coupling to the Gauss-Bonnet invariant and a non-minimal kinetic coupling. This theoretical framework is basically a non-minimally coupled Einstein-Gauss-Bonnet theory with extra corrections of the form of a non-minimal kinetic coupling. In order to comply with the GW170817 event, we shall impose a constraint on the propagation speed of the primordial tensor perturbations that it is equal to that of light's in vacuum, and this constraint basically specifies the way that the scalar potential and the non-minimal couplings of the theory can be chosen. The whole theoretical framework, which belongs to the larger class of Horndeski theories, cannot yield viable results, due to the fact that the primordial gravitational wave speed is not equal to that of light's. Thus we study this theory by also imposing the constraint of having gravity wave speed equal to the light speed. We directly examine the inflationary phenomenology of our theoretical framework and by assuming the slow-roll conditions, we derived the equations of motion in such a way so that analytical results may be extracted. By using several well motivated models we demonstrate the framework leads to a viable phenomenology.
url http://www.sciencedirect.com/science/article/pii/S0550321321002194
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