English

Systematic exploration of heavy element nucleosynthesis in protomagnetar outflows

High Energy Astrophysical Phenomena 2022-04-28 v2 Solar and Stellar Astrophysics

Abstract

We study the nucleosynthesis products in neutrino-driven winds from rapidly rotating, highly magnetised and misaligned protomagnetars using the nuclear reaction network SkyNet. We adopt a semi-analytic parametrized model for the protomagnetar and systematically study the capabilities of its neutrino-driven wind for synthesizing nuclei and eventually producing ultra-high energy cosmic rays (UHECRs). We find that for neutron-rich outflows (Ye<0.5Y_e<0.5), synthesis of heavy elements (A2065\overline{A}\sim 20-65) is possible during the first 10\sim 10 seconds of the outflow, but these nuclei are subjected to composition-altering photodisintegration during the epoch of particle acceleration at the dissipation radii. However, after the first 10\sim 10 seconds of the outflow, nucleosynthesis reaches lighter elements (A1050\overline{A}\sim 10-50) that are not subjected to subsequent photodisintegration. For proton-rich (Ye0.5Y_e \geq 0.5) outflows, synthesis is more limited (A415\overline{A}\sim 4-15). These suggest that while protomagnetars typically do not synthesize nuclei heavier than second r-process peak elements, they are intriguing sources of intermediate/heavy mass UHECRs. For all configurations, the most rapidly rotating protomagnetars are more conducive for nucleosynthesis with a weaker dependence on the magnetic field strength.

Keywords

Cite

@article{arxiv.2201.03576,
  title  = {Systematic exploration of heavy element nucleosynthesis in protomagnetar outflows},
  author = {Nick Ekanger and Mukul Bhattacharya and Shunsaku Horiuchi},
  journal= {arXiv preprint arXiv:2201.03576},
  year   = {2022}
}

Comments

16 pages, 7+3 figures, 1 table. This matches the version published in MNRAS

R2 v1 2026-06-24T08:45:30.462Z