Cosmic Strings in an Open Universe with Baryonic and Non-Baryonic Dark Matter
Phys.Rev.Lett. 74 (1995) 3522-3525
Abstract:
We study the effects of cosmic strings on structure formation in open universes. We calculate the power spectrum of density perturbations for two class of models: one in which all the dark matter is non baryonic (CDM) and one in which it is all baryonic (BDM). Our results are compared to the 1 in 6 IRAS QDOT power spectrum. The best candidates are then used to estimate $\mu$, the energy per unit length of the string network. Some comments are made on mechanisms by which structures are formed in the two theories.COSMIC STRINGS IN AN OPEN UNIVERSE WITH BARYONIC AND NONBARYONIC DARK-MATTER
PHYSICAL REVIEW LETTERS 74:18 (1995) 3522-3525
Inflation and squeezed quantum states
Phys.Rev.D 50 (1994) 4807-4820
Abstract:
The inflationary cosmology is analyzed from the point of view of squeezed quantum states. As noted by Grishchuk and Sidorov, the amplification of quantum fluctuations into macroscopic perturbations which occurs during cosmic inflation is a process of quantum squeezing. We carefully develop the squeezed state formalism and derive the equations that govern the evolution of a gaussian initial state. We derive the power spectrum of density perturbations for a simple inflationary model and discuss its features. We conclude that the squeezed state formalism provides an interesting framework within which to study the amplification process, but,in disagreement with the claims of Grishchuk and Sidorov, that it does {\em not} provide us with any new physical results.INFLATION AND SQUEEZED QUANTUM STATES
PHYSICAL REVIEW D 50:8 (1994) 4807-4820
MICROWAVE ANISOTROPIES FROM COSMIC DEFECTS
NATURE 368:6466 (1994) 27-31