# Inflation in the general Poincar\'e gauge cosmology

**Authors:** Hongchao Zhang, Lixin Xu

arXiv: 1906.04340 · 2020-10-14

## TL;DR

This paper explores inflation within a nine-parameter Poincaré gauge cosmology, demonstrating that a two-scalar field system can naturally produce slow-roll inflation through a detailed numerical analysis.

## Contribution

It reformulates the Poincaré gauge cosmology into a two-scalar field system and shows its capability to generate inflation without extra inflatons.

## Key findings

- The system can produce slow-roll inflation with sufficient e-folds.
- Hybrid inflation with phase transition is ruled out.
- The scalar fields can recover from high kinetic energies and still induce inflation.

## Abstract

The general Poincar\'e gauge cosmology given by a nine-parameter gravitational Lagrangian with ghost- and tachyon-free conditions is studied from the perspective of field theory. By introducing new variables for replacing two (pseudo-) scalar torsions, the Poincar\'e gauge cosmological system can be recast into a gravitational system coupled to two-scalar fields with a potential up to quartic-order. We discussed the possibility of this system producing two types of inflation without any extra inflatons. The hybrid inflation with a first-order phase transition can be ruled out, while the slow rollover can be achieved. The numerical analysis shows that the two-scalar fields system evolved in a potential well processes spontaneously four stages: "pre-inflation", slow-roll inflation with large enough e-folds, "pre-reheating" and reheating. We also studied the stableness of this system by setting large values of initial kinetic energies. The results show that even if the system evolves past the highest point of the potential well, the scalar fields can still return to the potential well and cause inflation. The general Poincar\'e gauge cosmology provides us with a self-consistent candidate of inflation.

## Full text

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## Figures

12 figures with captions in the complete paper: https://tomesphere.com/paper/1906.04340/full.md

## References

45 references — full list in the complete paper: https://tomesphere.com/paper/1906.04340/full.md

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Source: https://tomesphere.com/paper/1906.04340