arXiv · 1007.1060
Brans-Dicke model constrained from Big Bang nucleosynthesis and magnitude redshift relations of Supernovae
Abstract
The Brans-Dicke model with a variable cosmological term ($BD\Lambda$) has been investigated with use of the coupling constant of $\omega=10^4$. Parameters inherent in this model are constrained from comparison between Big Bang nucleosynthesis and the observed abundances. Furthermore, the magnitude redshift ($m-z$) relations are studied for $BD\Lambda$ with and without another constant cosmological term in a flat universe. Observational data of Type Ia Supernovae are used in the redshift range of $0.01<z<2$. It is found that our model with energy density of the constant cosmological term with the value of 0.7 can explain the SNIa observations, though the model parameters are insensitive to the $m-z$ relation.
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E. P. B. A. Thushari, R. Nakamura, M. Hashimoto, K. Arai. 2010-07-07. Brans-Dicke model constrained from Big Bang nucleosynthesis and magnitude redshift relations of Supernovae. https://doi.org/10.1051/0004-6361/201014602
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