2017Monthly Notices of the Royal Astronomical SocietyRequires access

Inhomogeneous nucleosynthesis in linearly coasting cosmology

Gurvinder Singh, Daksh Lohiya

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Abstract

We investigate primordial nucleosynthesis in a universe in which the scale factor evolves linearly with cosmic time and which has an inhomogeneous baryon density. We report that in principle one can close the bounds on dynamic estimates of matter by baryons alone – with no need of any exotic dark matter. We address to some concerns on the overall viability of such an evolution.

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What this paper is about

We investigate primordial nucleosynthesis in a universe in which the scale factor evolves linearly with cosmic time and which has an inhomogeneous baryon density. We report that in principle one can close the bounds on dynamic estimates of matter by baryons alone – with no need of any exotic dark matter. We address to some concerns on the overall viability of such an evolution.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We investigate primordial nucleosynthesis in a universe in which the scale factor evolves linearly with cosmic time and which has an inhomogeneous baryon density. We report that in principle one can close the bounds on dynamic estimates of matter by baryons alone – with no need of any exotic dark matter. We address to some concerns on the overall viability of such an evolution.

Key concepts: Physics, Cosmology, Nucleosynthesis, Big Bang nucleosynthesis, Baryon, Dark matter, Astrophysics, COSMIC cancer database

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