Statistics – Computation
Scientific paper
Apr 1992
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1992ap%26ss.190..281t&link_type=abstract
Astrophysics and Space Science (ISSN 0004-640X), vol. 190, no. 2, April 1992, p. 281-292.
Statistics
Computation
4
Astronomical Models, Big Bang Cosmology, Computational Astrophysics, Evolution (Development), Active Galactic Nuclei, Dark Matter, Gravitational Effects, High Energy Interactions, Particle Acceleration, Quasars
Scientific paper
A singularity-free model of the universe is developed within the framework of the Friedmann-Lemaitre-Robertson-Walker cosmology, which gives a physical explanation for the origin of the big bang and for the preponderance of matter over antimatter. It is shown that the model retains all the useful features of the standard-cosmology (Weinberg, 1972; Sandage, 1988) hot big-bang (HBB) model and resolves, in a very natural way, all the difficulties of the HBB model, such as the occurrence of space-time singularity. The new model also resolves the problem of the baryon asymmetry and can accont for the currently observed value of nu.
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