Astronomy and Astrophysics – Astronomy
Scientific paper
May 2004
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2004aps..aprv13013g&link_type=abstract
American Physical Society, April Meeting, 2004, May 1-4, 2004, Denver, Colorado April 2004, MEETING ID: APR04, abstract #V13.013
Astronomy and Astrophysics
Astronomy
Scientific paper
Quasars appear associated with gassy environments, particularly galaxies that usually exhibit smaller redshifts. The usual interpretation is that the Quasar is distant while the intervening galaxy is closer. Quasars also exhibit complex spectra, particularly the "Lyman alpha forest" of lines, again with smaller redshifts, again ascribed to closer intervening hydrogen clouds. Since the number of such absorption features increases with Z of the Quasar, this is a self-consistent picture, but not independently proven. An equally self-consistent interpretation is that the intervening gassy material PARTIALLY CAUSES the Large Quasar Redshifts via a Non-Doppler (or Non-Space Expansion) Redshift mechanism such as Raman, CREIL, Compton, Plasma or Wolf effects. This is in addition to the overall Hubble Redshift, but puts Quasars at closer distances than standard models. These Conclusions are supported by several decades of published astronomical observations which suggest that High-Z-Quasars are in close proximity to their associated Low-Z-Galaxies. Comparing Neutrino Redshifts to Photon Redshifts would yield conclusive evidence for resolving the competing models.
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