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General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology

We prove that the Einstein equations in Standard Schwarzschild Coordinates close to form a system of three ordinary differential equations for a family of spherically symmetric, self-similar expansion waves, and the critical ($k=0$) Friedmann universe associated with the pure radiation phase of the...

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Detalles Bibliográficos
Autores principales: Smoller, Joel, Temple, Blake
Lenguaje:eng
Publicado: American Mathematical Society 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/2114217
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author Smoller, Joel
Temple, Blake
author_facet Smoller, Joel
Temple, Blake
author_sort Smoller, Joel
collection CERN
description We prove that the Einstein equations in Standard Schwarzschild Coordinates close to form a system of three ordinary differential equations for a family of spherically symmetric, self-similar expansion waves, and the critical ($k=0$) Friedmann universe associated with the pure radiation phase of the Standard Model of Cosmology (FRW), is embedded as a single point in this family. Removing a scaling law and imposing regularity at the center, we prove that the family reduces to an implicitly defined one parameter family of distinct spacetimes determined by the value of a new {\it acceleration parameter} $a$, such that $a=1$ corresponds to FRW. We prove that all self-similar spacetimes in the family are distinct from the non-critical $k\neq0$ Friedmann spacetimes, thereby {\it characterizing} FRW as the unique spacetime lying at the intersection of these two one-parameter families. Expanding solutions about the center in fractional distance to the Hubble Length, we obtain the exact leading order quadratic and cubic corrections to the redshift vs luminosity relation for an observer at the center. It follows by continuity that corrections to the redshift vs luminosity relation observed after the radiation phase of the Big Bang can be accounted for, at the leading order quadratic level, by adjustment of the free parameter $a$. The third order correction is then a prediction. Since self-similar expanding waves represent possible time-as ymptotic wave patterns for the conservation laws associated with the highly nonlinear radiation phase, we propose to further investigate the possibility that these corrections to the Standard Model might be the source of the anomalous acceleration of the galaxies, an explanation wholly within Einstein's equations with classical sources, and not requiring Dark Energy or the cosmological constant.
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spelling cern-21142172021-04-21T19:57:39Zhttp://cds.cern.ch/record/2114217engSmoller, JoelTemple, BlakeGeneral relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmologyGeneral Theoretical PhysicsGeneral Relativity and CosmologyWe prove that the Einstein equations in Standard Schwarzschild Coordinates close to form a system of three ordinary differential equations for a family of spherically symmetric, self-similar expansion waves, and the critical ($k=0$) Friedmann universe associated with the pure radiation phase of the Standard Model of Cosmology (FRW), is embedded as a single point in this family. Removing a scaling law and imposing regularity at the center, we prove that the family reduces to an implicitly defined one parameter family of distinct spacetimes determined by the value of a new {\it acceleration parameter} $a$, such that $a=1$ corresponds to FRW. We prove that all self-similar spacetimes in the family are distinct from the non-critical $k\neq0$ Friedmann spacetimes, thereby {\it characterizing} FRW as the unique spacetime lying at the intersection of these two one-parameter families. Expanding solutions about the center in fractional distance to the Hubble Length, we obtain the exact leading order quadratic and cubic corrections to the redshift vs luminosity relation for an observer at the center. It follows by continuity that corrections to the redshift vs luminosity relation observed after the radiation phase of the Big Bang can be accounted for, at the leading order quadratic level, by adjustment of the free parameter $a$. The third order correction is then a prediction. Since self-similar expanding waves represent possible time-as ymptotic wave patterns for the conservation laws associated with the highly nonlinear radiation phase, we propose to further investigate the possibility that these corrections to the Standard Model might be the source of the anomalous acceleration of the galaxies, an explanation wholly within Einstein's equations with classical sources, and not requiring Dark Energy or the cosmological constant.American Mathematical SocietyarXiv:1005.3859oai:cds.cern.ch:21142172012
spellingShingle General Theoretical Physics
General Relativity and Cosmology
Smoller, Joel
Temple, Blake
General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
title General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
title_full General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
title_fullStr General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
title_full_unstemmed General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
title_short General relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
title_sort general relativistic self-similar waves that induce an anomalous acceleration into the standard model of cosmology
topic General Theoretical Physics
General Relativity and Cosmology
url http://cds.cern.ch/record/2114217
work_keys_str_mv AT smollerjoel generalrelativisticselfsimilarwavesthatinduceananomalousaccelerationintothestandardmodelofcosmology
AT templeblake generalrelativisticselfsimilarwavesthatinduceananomalousaccelerationintothestandardmodelofcosmology