Primordial nucleosynthesis with varying fundamental constants: Improved constraints and a possible solution to the Lithium problem
arXiv:2001.01787 · doi:10.1051/0004-6361/201937211
Abstract
Primordial nucleosynthesis is an observational cornerstone of the Hot Big Bang model and a sensitive probe of physics beyond the standard model. Its success has been limited by the so-called Lithium problem, for which many solutions have been proposed. We report on a self-consistent perturbative analysis of the effects of variations in nature's fundamental constants, which are unavoidable in most extensions of the standard model, on primordial nucleosynthesis, focusing on a broad class of Grand Unified Theory models. A statistical comparison between theoretical predictions and observational measurements of He, D, He and, Li consistently yields a preferred value of the fine-structure constant at the nucleosynthesis epoch that is larger than the current laboratory one. The level of statistical significance and the preferred extent of variation depend on model assumptions but the former can be more than four standard deviations, while the latter is always compatible with constraints at lower redshifts. If Lithium is not included in the analysis, the preference for a variation of is not statistically significant. The abundance of He is relatively insensitive to such variations. Our analysis highlights a viable and physically motivated solution to the Lithium problem, which warrants further study.
8 pages, 3 figures; Astronomy & Astrophysics Letters (in press)
References in corpus (11)
- Primordial Nucleosynthesis in the Precision Cosmology Era
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- The Primordial Lithium Problem
- The effects of He I 10830 on helium abundance determinations
- Coupled Variations of Fundamental Couplings and Primordial Nucleosynthesis
- The status of varying constants: a review of the physics, searches and implications
- Dependence of nuclear binding on hadronic mass variation
- Primordial nucleosynthesis as a probe of fundamental physics parameters
- Unifying cosmological and recent time variations of fundamental couplings
- Probing unification scenarios with atomic clocks
- Roles of BeLi resonances in big bang nucleosynthesis with time-dependent quark mass and Li reduction by a heavy quark mass
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