The Quantum Corrected Mode Function and Power Spectrum for a Scalar Field during Inflation
Abstract
We compute the one- and two-loop corrected mode function of a massless minimally coupled scalar endowed with a quartic self-interaction in the locally de Sitter background of an inflating universe for a state which is released in Bunch-Davies vacuum at time . We then employ it to correct the scalar's tree-order scale invariant power spectrum . The corrections are secular, and have scale dependent part that can be expanded in even powers of , where is the comoving wave number, is the expansion rate and is the cosmic scale factor. At one-loop, the scale invariant shift in the power spectrum grows as in leading order. The -dependent shifts, however, are constants for each mode, in the late time limit. At two-loop order, on the other hand, the scale invariant shift grows as whereas the -dependent shifts grow as , in leading order. We finally calculate the scalar's spectral index and the running of the spectral index . They imply that the spectrum is slightly red-tilted; hence, the amplitudes of fluctuations grow slightly towards the larger scales.
Cite
@article{arxiv.1312.6409,
title = {The Quantum Corrected Mode Function and Power Spectrum for a Scalar Field during Inflation},
author = {V. K. Onemli},
journal= {arXiv preprint arXiv:1312.6409},
year = {2014}
}
Comments
33 pages