Deuterium-Proton Fusion in an Effective Field Theory Constructed from On-Shell Amplitudes
Tim M. P. Tait
University of California, Irvine
nucl-th, astro-ph.CO, hep-ph, hep-th
Submitted: 2026-07-06
Comments: 16 pages, 4 figures. Ancillary file: tabulated S(E) with its 1-sigma band (dpHe3_Sfactor_band.txt)
License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
Terminology
Sources
- Big Bang Nucleosynthesis: 2015
- Precision big bang nucleosynthesis with improved Helium-4 predictions
- One percent determination of the primordial deuterium abundance
- Planck 2018 results. VI. Cosmological parameters
- Big Bang Nucleosynthesis as a Probe of New Physics
- The Impact of New d(p,\gamma)He3 Rates on Big Bang Nucleosynthesis
- Solar fusion cross sections II: the pp chain and CNO cycles
- Solar fusion III: New data and theory for hydrogen-burning stars
- Measurement of the $^{2}$H($p,\gamma$)$^{3}$He S-factor at 265-1094keV
- Implication of the proton-deuteron radiative capture for Big Bang Nucleosynthesis
- A new tension in the cosmological model from primordial deuterium?
- Primordial Deuterium after LUNA: concordances and error budget
- Bayesian Estimation of the D(p,$\gamma$)$^3$He Thermonuclear Reaction Rate
- PArthENoPE Revolutions
- A data-driven prediction for the primordial deuterium abundance
- Effective Field Theory for Halo Nuclei: Shallow p-Wave States
- Narrow Resonances in Effective Field Theory
- Modern Theory of Nuclear Forces
- Chiral effective field theory and nuclear forces
- Ab initio prediction of the $^4{\rm He}(d,\gamma)\,^6\rm Li$ big bang radiative capture
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