4.7 Article

Heavy elements nucleosynthesis on accreting white dwarfs: building seeds for the p-process

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/staa2281

关键词

stars: abundances; stars: evolution; stars: interiors

资金

  1. COST (European Cooperation in Science and Technology) [CA16117]
  2. WestGrid
  3. Compute Canada Calcul Canada
  4. University of British Columbia computer cluster 'Orcinus'
  5. Science and Technology Facilities Council UK [ST/M006085/1]
  6. European Research Council ERC-2015-STG [677497]
  7. Swiss National Science Foundation
  8. EU-FP7-ERC Advanced Grant [321263 FISH]
  9. STFC (University of Hull's Consolidated Grant) [ST/R000840/1]
  10. 'Lendulet-2014' Program of the Hungarian Academy of Sciences (Hungary)
  11. ERC Consolidator Grant funding scheme (Project RADIOSTAR, Hungary) [724560]
  12. National Science Foundation (USA) [PHY-1430152]
  13. European Research Council (ERC) [677497] Funding Source: European Research Council (ERC)
  14. STFC [ST/M006085/1, ST/R000840/1] Funding Source: UKRI

向作者/读者索取更多资源

The origin of the proton-rich trans-iron isotopes in the Solar system is still uncertain. Single-degenerate thermonuclear supernovae (SNIa) with n-capture nucleosynthesis seeds assembled in the external layers of the progenitor's rapidly accreting white dwarf (RAWD) phase may produce these isotopes. We calculate the stellar structure of the accretion phase of five white dwarf (WD) models with initial masses >= 0.85 M-circle dot using the stellar code MESA The near-surface layers of the 1, 1.26, 1.32 and 1.38 M-circle dot models are most representative of the regions in which the bulk of the p nuclei are produced during SNIa explosions, and for these models we also calculate the neutron-capture nucleosynthesis in the external layers. Contrary to previous RAWD models at lower mass, we find that the H-shell flashes are the main site of n-capture nucleosynthesis. We find high neutron densities up to several 10(15) cm(-3) in the most massive WDs. Through the recurrence of the H-shell flashes these intermediate neutron densities can be sustained effectively for a long time leading to high-neutron exposures with a strong production up to Pb. Both the neutron density and the neutron exposure increase with increasing the mass of the accreting WD. Finally, the SNIa nucleosynthesis is calculated using the obtained abundances as seeds. We obtain solar to supersolar abundances for p-nuclei with A > 96. Our models show that SNIa are a viable p-process production site.

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