We study an alternative geometrical approach on the problem of classical cosmological singularity. It is based on a generalized function which consists of a cusped coupled isosurface. Such a geometry is computed and discussed into the context of Friedmann singularity-free cosmology where a pre-big bang scenario is considered. Assuming that the mechanism of cusp formation is described by non-linear oscillations of a pre-big bang extended very high energy density field (> 3 × 1094kg/m3), we show that the action under the gravitational field follows a tautochrone of revolution, understood here as the primary projected geometry that alternatively replaces the Friedmann singularity in the standard big bang theory. As shown here this new approach allows us to interpret the nature of both matter and dark energy from first geometric principles.
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1 October 2012
THE SIXTH INTERNATIONAL SCHOOL ON FIELD THEORY AND GRAVITATION-2012
23–27 April 2012
Petrópolis - RJ, Brazil
Research Article|
October 01 2012
An alternative singularity-free cosmological scenario from cusp geometries
Reinaldo R. Rosa;
Reinaldo R. Rosa
Lab for Computing and Applied Math (LAC) - National Institute for Space Research (INPE), São José dos Campos, SP,
Brazil
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Cristiano Strieder;
Cristiano Strieder
Lab for Computing and Applied Math (LAC) - National Institute for Space Research (INPE), São José dos Campos, SP,
Brazil
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Diego H. Stalder
Diego H. Stalder
Lab for Computing and Applied Math (LAC) - National Institute for Space Research (INPE), São José dos Campos, SP,
Brazil
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AIP Conf. Proc. 1483, 441–446 (2012)
Citation
Reinaldo R. Rosa, Cristiano Strieder, Diego H. Stalder; An alternative singularity-free cosmological scenario from cusp geometries. AIP Conf. Proc. 1 October 2012; 1483 (1): 441–446. https://doi.org/10.1063/1.4756991
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