4.7 Article

Markov Chain Monte Carlo Predictions of Neutron-rich Lanthanide Properties as a Probe of r-process Dynamics

期刊

ASTROPHYSICAL JOURNAL
卷 907, 期 2, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.3847/1538-4357/abd035

关键词

Nucleosynthesis; Solar abundances; Nuclear astrophysics; Neutron stars; Bayesian statistics; Chi-squared statistic

资金

  1. U.S. Department of Energy [DE-FG02-02ER41216, DE-FG02-95-ER40934, DE-SC0018232]
  2. National Science Foundation Hub (N3AS) grant [PHY-1630782]
  3. US Department of Energy through the Los Alamos National Laboratory
  4. National Nuclear Security Administration of U.S. Department of Energy [89233218CNA000001]
  5. National Science Foundation [PHY-1430152]

向作者/读者索取更多资源

By applying statistical methods, this study examined the synthesis of lanthanide elements through the r-process and found that different outflow conditions significantly impact the mass solutions. The mass predictions for neutron-rich isotopes were compared with experimental data, showing compatibility with solar abundances and neutron-rich measurements.
Lanthanide element signatures are key to understanding many astrophysical observables, from merger kilonova light curves to stellar and solar abundances. To learn about the lanthanide element synthesis that enriched our solar system, we apply the statistical method of Markov Chain Monte Carlo to examine the nuclear masses capable of forming the r-process rare-earth abundance peak. We describe the physical constraints we implement with this statistical approach and demonstrate the use of the parallel chains method to explore the multidimensional parameter space. We apply our procedure to three moderately neutron-rich astrophysical outflows with distinct types of r-process dynamics. We show that the mass solutions found are dependent on outflow conditions and are related to the r-process path. We describe in detail the mechanism behind peak formation in each case. We then compare our mass predictions for neutron-rich neodymium and samarium isotopes to the latest experimental data from the CPT at CARIBU. We find our mass predictions given outflows that undergo an extended (n,gamma)(gamma,n) equilibrium to be those most compatible with both observational solar abundances and neutron-rich mass measurements.

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