The Impact of New d(p,γ)He3 Rates on Big Bang Nucleosynthesis
arXiv:2011.13874 · doi:10.1088/1475-7516/2021/03/046
Abstract
We consider the effect on Big Bang Nucleosynthesis (BBN) of new measurements of the He cross section by the LUNA Collaboration. These have an important effect on the primordial abundance of D/H which is also sensitive to the baryon density at the time of BBN. We have re-evaluated the thermal rate for this reaction, using a world average of cross section data, which we describe with model-independent polynomials; our results are in good agreement with a similar analysis by LUNA. We then perform a full likelihood analysis combining BBN and Planck cosmic microwave background (CMB) likelihood chains using the new rate combined with previous measurements and compare with the results using previous rates. Concordance between BBN and CMB measurements of the anisotropy spectrum using the old rates was excellent. The predicted deuterium abundance at the Planck value of the baryon density was which can be compared with the value determined from quasar absorption systems . Using the new rates we find . We thus find consistency among BBN theory, deuterium and He observations, and the CMB, when using reaction rates fit in our data-driven approach. We also find that the new reaction data tightens the constraints on the number of relativistic degrees of freedom during BBN, giving the effective number of light neutrino species in good agreement with the Standard Model of particle physics. Finally, we note that the observed deuterium abundance continues to be more precise than the BBN+CMB prediction, whose error budget is now dominated by He and .
28 pages, 12 figures. Comments welcome
References in corpus (15)
- 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
- A Bitter Pill: The Primordial Lithium Problem Worsens
- A probable stellar solution to the cosmological lithium discrepancy
- Standard big bang nucleosynthesis and primordial CNO Abundances after Planck
- The primordial deuterium abundance of the most metal-poor damped Lyman-alpha system
- A new tension in the cosmological model from primordial deuterium?
- A robust deuterium abundance; Re-measurement of the z=3.256 absorption system towards the quasar PKS1937-1009
- New Nuclear Physics for Big Bang Nucleosynthesis
- Back to the Lithium Plateau with J0023+0307 with [Fe/H]<-6
- Thermonuclear reaction rates and primordial nucleosynthesis
- Bayesian estimation of thermonuclear reaction rates for deuterium+deuterium reactions
- Setup commissioning for an improved measurement of the D(p,gamma)3He cross section at Big Bang Nucleosynthesis energies
Cited by in corpus (12)
- Inflaton Oscillations and Post-Inflationary Reheating
- Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined
- Primordial Deuterium after LUNA: concordances and error budget
- Thermal QCD Axions across Thresholds
- The Road to Precision Cosmology
- Resolving conclusions about the early Universe requires accurate nuclear measurements
- Primordial nucleosynthesis with varying fundamental constants: Solutions to the Lithium problem and the Deuterium discrepancy
- Cosmological Constraints on Dark Scalar
- Extragalactic 85Rb/87Rb and 6Li/7Li ratios in the Small Magellanic Cloud
- Detection of Deuterated Hydrocarbon Nanoparticles in the Whirlpool Galaxy, M51
- The cosmological lithium problem
- Cosmological consequences of a scalar field with oscillating equation of state. IV. Primordial nucleosynthesis and the deuterium problem