4.7 Article

Actinide-rich and Actinide-poor r-process-enhanced Metal-poor Stars Do Not Require Separate r-process Progenitors

Journal

ASTROPHYSICAL JOURNAL
Volume 881, Issue 1, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.3847/1538-4357/ab2a01

Keywords

binaries: close; nuclear reactions, nucleosynthesis, abundances; stars: abundances; stars: Population II

Funding

  1. U.S. Department of Energy (DOE) through the FRIB Theory Alliance [DE-SC0013617]
  2. National Science Foundation (NSF) [PHY-1430152]
  3. National Science Foundation [AST-1716251]
  4. U.S. DOE [DE-FG02-02ER41216, DE-FG02-95-ER40934, DE-SC0018232, DE-AC52-07NA27344]
  5. NSF [PHY-1630782]
  6. US DOE through the Los Alamos National Laboratory [89233218CNA000001]
  7. U.S. Department of Energy (DOE) [DE-SC0013617] Funding Source: U.S. Department of Energy (DOE)

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The astrophysical production site of the heaviest elements in the universe remains a mystery. Incorporating heavy element signatures of metal-poor, r-process enhanced stars into theoretical studies of r-process production can offer crucial constraints on the origin of heavy elements. In this study, we introduce and apply the Actinide-Dilution with Matching model to a variety of stellar groups ranging from actinide-deficient to actinide-enhanced to empirically characterize r-process ejecta mass as a function of electron fraction. We find that actinide-boost stars do not indicate the need for a unique and separate r-process progenitor. Rather, small variations of neutron richness within the same type of r-process event can account for all observed levels of actinide enhancements. The very low-Y-e, fission-cycling ejecta of an r-process event need only constitute 10-30% of the total ejecta mass to accommodate most actinide abundances of metal-poor stars. We find that our empirical Y-e distributions of ejecta are similar to those inferred from studies of GW170817 mass ejecta ratios, which is consistent with neutron-star mergers being a source of the heavy elements in metal-poor, r-process enhanced stars.

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