English

Radiative 3He-alpha reaction in Halo Effective Field Theory

Nuclear Theory 2018-05-29 v2 Solar and Stellar Astrophysics High Energy Physics - Phenomenology Nuclear Experiment

Abstract

In this work we study the radiative capture of 3He{\rm {}^3He} on 4He{\rm {}^4He} within the halo effective field theory (EFT) framework. At leading order the capture amplitude comprises the initial state ss-wave strong and Coulomb interactions summed to all orders. At the same order in the expansion, leading two-body currents contribute as well. We find delicate cancelations between the various contributions, and the two-body current contributions can be replaced by appropriately enhancing the asymptotic normalizations of the 7^7Be ground and first excited state wave functions. The next-to-leading order corrections come from the ss-wave shape parameter and the pure Coulomb dd-wave initial state interactions. We fit the EFT parameters to available scattering data and most recent capture data. Our zero-energy astrophysical SS-factor estimate, S340.55S_{34}\sim 0.55 keV b, is consistent within error bars with the average in the literature.

Keywords

Cite

@article{arxiv.1612.08959,
  title  = {Radiative 3He-alpha reaction in Halo Effective Field Theory},
  author = {Renato Higa and Gautam Rupak and Akshay Vaghani},
  journal= {arXiv preprint arXiv:1612.08959},
  year   = {2018}
}

Comments

27 pages, 9 figures. Misprints and one wrong equation corrected. To be published at The European Physical Journal A