A critical value of the inflationary tensor-to-scalar ratio from inhomogeneous inflation
arXiv:2512.13673
Abstract
We show that, for a given fixed value of the number of e-folds of the homogeneous solution, inflation succeeds with order unity inhomogeneities in the initial conditions above a characteristic value of the tensor-to-scalar ratio . In practice, we work with an -attractor -model and vary its characteristic scale , keeping the initial inhomogeneities in both gradient and kinetic fields of order unity of the inflationary energy scale. Under these conditions, and assuming 100 e-folds for the homogeneous solution, the requirement for 60 e-folds of inflation occurs at a critical characteristic scale , corresponding to an . Since increasing the amplitude of the inhomogeneities will make inflation less robust and hence require a higher characteristic scale in order for inflation to succeed, for a given number of e-folds achieved by the homogeneous solution is a lower bound.
11 pages including references and appendices, 5 figures