Non-perturbative $\langle ϕ\rangle$, $\langle ϕ^2 \rangle$ and the dynamically generated scalar mass with Yukawa interaction in the inflationary de Sitter spacetime

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Main Authors: Bhattacharya, Sourav, Choudhury, Moutushi Dutta
Format: Preprint
Published: 2023
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author Bhattacharya, Sourav
Choudhury, Moutushi Dutta
author_facet Bhattacharya, Sourav
Choudhury, Moutushi Dutta
contents We consider a massless minimally coupled self interacting quantum scalar field coupled to fermion via the Yukawa interaction, in the inflationary de Sitter background. The fermion is also taken to be massless and the scalar potential is taken to be a hybrid, $V(ϕ)= λϕ^4/4!+ βϕ^3/3!$ ($λ>0$). The chief physical motivation behind this choice of $V(ϕ)$ corresponds to, apart from its boundedness from below property, the fact that shape wise $V(ϕ)$ has qualitative similarity with standard inflationary classical slow roll potentials. Also, its vacuum expectation value can be negative, suggesting some screening of the inflationary cosmological constant. We choose that $\langle ϕ\rangle\sim 0$ at early times with respect to the Bunch-Davies vacuum, so that perturbation theory is valid initially. We consider the equations satisfied by $\langle ϕ(t) \rangle$ and $\langle ϕ^2(t) \rangle$, constructed from the coarse grained equation of motion for the slowly rolling $ϕ$. We then compute the vacuum diagrammes of various relevant operators using the in-in formalism up to three loop, in terms of the leading powers of the secular logarithms. For a closed fermion loop, we have restricted ourselves here to only the local contribution. These large temporal logarithms are then resummed by constructing suitable non-perturbative equations to compute $\langle ϕ\rangle$ and $\langle ϕ^2 \rangle$. $\langle ϕ\rangle$ turns out to be at least approximately an order of magnitude less compared to the minimum of the classical potential, $-3β/λ$, owing to the strong quantum fluctuations. For $\langle ϕ^2 \rangle$, we have computed the dynamically generated scalar mass at late times, by taking the appropriate purely local contributions. Variations of these quantities with respect to different couplings have also been presented.
format Preprint
id arxiv_https___arxiv_org_abs_2308_11384
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Non-perturbative $\langle ϕ\rangle$, $\langle ϕ^2 \rangle$ and the dynamically generated scalar mass with Yukawa interaction in the inflationary de Sitter spacetime
Bhattacharya, Sourav
Choudhury, Moutushi Dutta
High Energy Physics - Theory
General Relativity and Quantum Cosmology
We consider a massless minimally coupled self interacting quantum scalar field coupled to fermion via the Yukawa interaction, in the inflationary de Sitter background. The fermion is also taken to be massless and the scalar potential is taken to be a hybrid, $V(ϕ)= λϕ^4/4!+ βϕ^3/3!$ ($λ>0$). The chief physical motivation behind this choice of $V(ϕ)$ corresponds to, apart from its boundedness from below property, the fact that shape wise $V(ϕ)$ has qualitative similarity with standard inflationary classical slow roll potentials. Also, its vacuum expectation value can be negative, suggesting some screening of the inflationary cosmological constant. We choose that $\langle ϕ\rangle\sim 0$ at early times with respect to the Bunch-Davies vacuum, so that perturbation theory is valid initially. We consider the equations satisfied by $\langle ϕ(t) \rangle$ and $\langle ϕ^2(t) \rangle$, constructed from the coarse grained equation of motion for the slowly rolling $ϕ$. We then compute the vacuum diagrammes of various relevant operators using the in-in formalism up to three loop, in terms of the leading powers of the secular logarithms. For a closed fermion loop, we have restricted ourselves here to only the local contribution. These large temporal logarithms are then resummed by constructing suitable non-perturbative equations to compute $\langle ϕ\rangle$ and $\langle ϕ^2 \rangle$. $\langle ϕ\rangle$ turns out to be at least approximately an order of magnitude less compared to the minimum of the classical potential, $-3β/λ$, owing to the strong quantum fluctuations. For $\langle ϕ^2 \rangle$, we have computed the dynamically generated scalar mass at late times, by taking the appropriate purely local contributions. Variations of these quantities with respect to different couplings have also been presented.
title Non-perturbative $\langle ϕ\rangle$, $\langle ϕ^2 \rangle$ and the dynamically generated scalar mass with Yukawa interaction in the inflationary de Sitter spacetime
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2308.11384