Inflating in perturbative LVS: Global Embedding and Robustness

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Hauptverfasser: Bera, Swagata, Chakraborty, Dibya, Leontaris, George K., Shukla, Pramod
Format: Preprint
Veröffentlicht: 2024
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author Bera, Swagata
Chakraborty, Dibya
Leontaris, George K.
Shukla, Pramod
author_facet Bera, Swagata
Chakraborty, Dibya
Leontaris, George K.
Shukla, Pramod
contents The perturbative LARGE volume scenario (LVS) is a promising moduli stabilisation scheme in which the overall volume modulus of the compactifying Calabi-Yau (CY) threefold is dynamically stabilised to exponentially large values via using only perturbative corrections. In this article, using an orientifold of a K3-fibred CY threefold, we present the global embedding of an inflationary model proposed in the framework of perturbative LVS, in which the overall volume modulus acts as the inflaton field rolling on a nearly flat potential induced by a combination of the ${α^\prime}^3$-corrections and the so-called {\it log-loop} effects. Given that having a concrete global construction facilitates explicit expressions for a set of sub-leading corrections, as a next step, we present a detailed analysis investigating the robustness of the single-field inflationary model against such corrections, in particular those arising from the winding-type string loop corrections and the higher derivative F$^4$-corrections.
format Preprint
id arxiv_https___arxiv_org_abs_2405_06738
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Inflating in perturbative LVS: Global Embedding and Robustness
Bera, Swagata
Chakraborty, Dibya
Leontaris, George K.
Shukla, Pramod
High Energy Physics - Theory
The perturbative LARGE volume scenario (LVS) is a promising moduli stabilisation scheme in which the overall volume modulus of the compactifying Calabi-Yau (CY) threefold is dynamically stabilised to exponentially large values via using only perturbative corrections. In this article, using an orientifold of a K3-fibred CY threefold, we present the global embedding of an inflationary model proposed in the framework of perturbative LVS, in which the overall volume modulus acts as the inflaton field rolling on a nearly flat potential induced by a combination of the ${α^\prime}^3$-corrections and the so-called {\it log-loop} effects. Given that having a concrete global construction facilitates explicit expressions for a set of sub-leading corrections, as a next step, we present a detailed analysis investigating the robustness of the single-field inflationary model against such corrections, in particular those arising from the winding-type string loop corrections and the higher derivative F$^4$-corrections.
title Inflating in perturbative LVS: Global Embedding and Robustness
topic High Energy Physics - Theory
url https://arxiv.org/abs/2405.06738