28 November 2016 to 2 December 2016
Australia/Sydney timezone

Natural Inflation with Hidden Scale Invariance

1 Dec 2016, 17:10
20m
4001 (SNH)

4001

SNH

Speaker

Shelley Liang (The university of Sydney)

Description

We propose a new class of natural inflation models based on a hidden scale invariance. In a very generic Wilsonian effective field theory with an arbitrary number of scalar fields, which exhibits scale invariance via the dilaton, the potential necessarily contains a flat direction in the classical limit. This flat direction is lifted by small quantum corrections and inflation is realised without need for an unnatural fine-tuning. In the conformal limit, the effective potential becomes linear in the inflaton field, yielding to specific predictions for the spectral index and the tensor-to-scalar ratio, being respectively: ns−1≈−0.025(N⋆/60)−1 and r≈0.0667(N⋆/60)−1, where N⋆≈30−65 is a number of efolds during observable inflation. This predictions are in reasonable agreement with cosmological measurements. Further improvement of the accuracy of these measurements may turn out to be critical in falsifying our scenario.

Authors

Archil Kobakhidze (The University of Sydney) Neil Barrie (The University of Sydney) Shelley Liang (The university of Sydney)

Presentation materials