Big-Bang nucleosynthesis: Constraints on nuclear reaction rates, neutrino degeneracy, inhomogeneous and Brans–Dicke models

We review the recent progress in the Big-Bang nucleosynthesis which includes the standard and nonstandard theory of cosmology, effects of neutrino degeneracy, and inhomogeneous nucleosynthesis within the framework of a Friedmann model. As for a nonstandard theory of gravitation, we adopt a Brans–Dic...

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Published inInternational journal of modern physics. E, Nuclear physics Vol. 26; no. 8; p. 1741003
Main Authors Nakamura, Riou, Hashimoto, Masa-Aki, Ichimasa, Ryotaro, Arai, Kenzo
Format Journal Article
LanguageEnglish
Published Singapore World Scientific Publishing Company 01.08.2017
World Scientific Publishing Co. Pte., Ltd
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ISSN0218-3013
1793-6608
DOI10.1142/S0218301317410038

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Abstract We review the recent progress in the Big-Bang nucleosynthesis which includes the standard and nonstandard theory of cosmology, effects of neutrino degeneracy, and inhomogeneous nucleosynthesis within the framework of a Friedmann model. As for a nonstandard theory of gravitation, we adopt a Brans–Dicke theory which incorporates a cosmological constant. We constrain various parameters associated with each subject.
AbstractList We review the recent progress in the Big-Bang nucleosynthesis which includes the standard and nonstandard theory of cosmology, effects of neutrino degeneracy, and inhomogeneous nucleosynthesis within the framework of a Friedmann model. As for a nonstandard theory of gravitation, we adopt a Brans–Dicke theory which incorporates a cosmological constant. We constrain various parameters associated with each subject.
Author Arai, Kenzo
Ichimasa, Ryotaro
Hashimoto, Masa-Aki
Nakamura, Riou
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Snippet We review the recent progress in the Big-Bang nucleosynthesis which includes the standard and nonstandard theory of cosmology, effects of neutrino degeneracy,...
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SubjectTerms Big bang cosmology
Cosmological constant
Cosmology
Neutrinos
Nuclei (nuclear physics)
Title Big-Bang nucleosynthesis: Constraints on nuclear reaction rates, neutrino degeneracy, inhomogeneous and Brans–Dicke models
URI http://www.worldscientific.com/doi/abs/10.1142/S0218301317410038
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