Astronomy and Astrophysics – Astrophysics
Scientific paper
Sep 2006
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2006head....9.1302g&link_type=abstract
American Astronomical Society, HEAD meeting #9, #13.02; Bulletin of the American Astronomical Society, Vol. 38, p.366
Astronomy and Astrophysics
Astrophysics
Scientific paper
Applying the known physics of plasmas and spinodal decomposition, as well as Gravitation, to the Early Big Bang Universe, a unique original "Strong" Magnetic Field Model (SMF) was created that explains the origin of a very large-scale primordial magnetic field in each Supercluster of galaxies and quasars. and of the observed large-scale structure. It also provides a new classification of galactic-size objects depending on the Ratio of magnetic energy to rotational energy in each object, and explains the existence of significant magnetic fields in most galaxies. An intense, highly relativistic gravitationally-bound stable current loop (Storage Ring) is proposed offering a model for gamma ray burst creation. The loop is formed by the initial gravitational collapse.It explains the nature of the AGN/Quasar Central Engine, galactic structure and radio and optical jets. Inflation can be justified by its explanation of the horizon and flatness problems and the lack of observed magnetic monopoles, without alleging that the only source of fluctuations, that are needed for the relatively rapid formation of stars, galaxies and quasars, was due solely to very tiny fluctuations produced very far back in time during Inflation and survived for several hundreds of millions of years. The unstable plasma "Pinch Effect" in SMF also can provide these needed fluctuations. Astro-ph0509223 .
Ref. : Proc. of the 22nd Texas Symposium on Relativistic Astrophysics held at Stanford University, December 13-17, 2005, Astro-ph0509223
Category: Formation of Galaxies and Quasars, gamma ray bursts
Facility Keywords: early universe, origin of galaxies, origin of quasars, gamma ray bursts
Presentation preference: Poster
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