arXiv:hep-ph/9208217·v1·High Energy Physics — Phenomenology
Density Perturbations,Gravity Waves and the Cosmic Microwave Background
Tarun Souradeep🇮🇳 · Varun Sahni🇮🇳
Abstract
We asses the contribution to the observed large scale anisotropy of the cosmic microwave background radiation, arising from both gravity waves as well as adiabatic density perturbations, generated by a common inflationary mechanism in the early Universe. We find that for inflationary models predicting power law primordial spectra %, , the relative contribution to the quadrupole anisotropy from gravity waves and scalar density perturbations, depends crucially upon . For , gravity waves perturb the CMBR by a larger amount than density perturbations, whereas for the reverse is true. %For nearly exponential inflation, on the other hand, the contribution to the %microwave anisotropy from scalar density perturbations always exceeds %that due to gravity waves. Normalising the amplitude of the density perturbation spectrum at large scales, using the observed value of the COBE quadrupole, we determine -- the rms density contrast on scales Mpc, for cosmological models with cold dark matter. We find that for , a large amount of biasing is required in order to reconcile theory with observations.
Comments: 10 Pages. (5 Figures available on request.) IUCAA -07-92