Difference between revisions of "Experimental Verifications of Isoredshift with Possible Absence of Universe Expansion, Big Bang, Dark Matter, and Dark Energy"

From Natural Philosophy Wiki
Jump to navigation Jump to search
(Imported from text file)
 
(Imported from text file)
Line 1: Line 1:
 
{{Infobox paper
 
{{Infobox paper
 
| title = Experimental Verifications of Isoredshift with Possible Absence of Universe Expansion, Big Bang, Dark Matter, and Dark Energy
 
| title = Experimental Verifications of Isoredshift with Possible Absence of Universe Expansion, Big Bang, Dark Matter, and Dark Energy
| url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_5751.pdf Link to paper]
+
| url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_5752.pdf Link to paper]
 
| author = [[Ruggero Maria Santilli]]
 
| author = [[Ruggero Maria Santilli]]
 
| published = 2010
 
| published = 2010
 
| journal = [[Open Astronomy Journal]]
 
| journal = [[Open Astronomy Journal]]
| volume = [[3]]
 
| pages = 126-144
 
 
}}
 
}}
  
'''Read the full paper''' [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_5751.pdf here]
+
'''Read the full paper''' [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_5752.pdf here]
  
 
==Abstract==
 
==Abstract==
  
In this paper, we present systematic studies on the insufficiencies of special relativity within physical media, such as water, atmospheres and the interior of astrophysical bodies. We outline the rather large body of research on the deformations of special relativity applicable within physical media, known under the name of ''isotopies''. We then present, apparently for the first time, experimental verifications of the hypothesis formulated by the author in 1991, and today known as ''isoredshift'', according to which light propagating within a physical medium experiences a shift of its frequency toward the red without any relative motion between the source, the medium and the observer, the shift originating from expected loss of energy to the medium due to interactions. We then confirm the isoredshift in the colors of our atmosphere as well as in the large difference in cosmological redshift between certain quasars and their associated galaxies; we indicate the consequential conceivable absence of universe expansion, big bang, dark matter, and dark energy; and propose ''systematic tests for the resolution of cosmological models via experiments on Earth along the teaching of Galileo Galilei''. In this paper, we present systematic studies on the insufficiencies of special relativity within physical media, such as water, atmospheres and the interior of astrophysical bodies. We outline the rather large body of research on the deformations of special relativity applicable within physical media, known under the name of ''isotopies''. We then present, apparently for the first time, experimental verifications of the hypothesis formulated by the author in 1991, and today known as ''isoredshift'', according to which light propagating within a physical medium experiences a shift of its frequency toward the red without any relative motion between the source, the medium and the observer, the shift originating from expected loss of energy to the medium due to interactions. We then confirm the isoredshift in the colors of our atmosphere as well as in the large difference in cosmological redshift between certain quasars and their associated galaxies; we indicate the consequential conceivable absence of universe expansion, big bang, dark matter, and dark energy; and propose ''systematic tests for the resolution of cosmological models via experiments on Earth along the teaching of Galileo Galilei''.[[Category:Scientific Paper]]
+
In this paper, we present systematic studies on the insufficiencies of special relativity within physical media, such as water, atmospheres and the interior of astrophysical bodies. We outline the rather large body of research on the deformations of special relativity applicable within physical media, known under the name of ''isotopies''. We then present, apparently for the first time, experimental verifications of the hypothesis formulated by the author in 1991, and today known as ''isoredshift'', according to which light propagating within a physical medium experiences a shift of its frequency toward the red without any relative motion between the source, the medium and the observer, the shift originating from expected loss of energy to the medium due to interactions. We then confirm the isoredshift in the colors of our atmosphere as well as in the large difference in cosmological redshift between certain quasars and their associated galaxies; we indicate the consequential conceivable absence of universe expansion, big bang, dark matter, and dark energy; and propose ''systematic tests for the resolution of cosmological models via experiments on Earth along the teaching of Galileo Galilei''.
 +
 
 +
[[Category:Scientific Paper|experimental verifications isoredshift possible absence universe expansion big bang dark matter dark energy]]
  
 
[[Category:Relativity]]
 
[[Category:Relativity]]

Revision as of 10:24, 1 January 2017

Scientific Paper
Title Experimental Verifications of Isoredshift with Possible Absence of Universe Expansion, Big Bang, Dark Matter, and Dark Energy
Read in full Link to paper
Author(s) Ruggero Maria Santilli
Keywords {{{keywords}}}
Published 2010
Journal Open Astronomy Journal

Read the full paper here

Abstract

In this paper, we present systematic studies on the insufficiencies of special relativity within physical media, such as water, atmospheres and the interior of astrophysical bodies. We outline the rather large body of research on the deformations of special relativity applicable within physical media, known under the name of isotopies. We then present, apparently for the first time, experimental verifications of the hypothesis formulated by the author in 1991, and today known as isoredshift, according to which light propagating within a physical medium experiences a shift of its frequency toward the red without any relative motion between the source, the medium and the observer, the shift originating from expected loss of energy to the medium due to interactions. We then confirm the isoredshift in the colors of our atmosphere as well as in the large difference in cosmological redshift between certain quasars and their associated galaxies; we indicate the consequential conceivable absence of universe expansion, big bang, dark matter, and dark energy; and propose systematic tests for the resolution of cosmological models via experiments on Earth along the teaching of Galileo Galilei.