Stochastic Chemical Evolution of Radioactive Isotopes with a Monte Carlo Approach
arXiv:1911.01457 · doi:10.3847/1538-4357/ab5a88
Abstract
Short-lived radionuclides (SLRs) with mean-lives of a few to hundreds Myr provide unique opportunities to probe recent nucleosynthesis events in the interstellar medium, and the physical conditions in which the Sun formed. Here we quantify the uncertainty in the predicted evolution of SLRs within a parcel of interstellar gas given the stochastic nature of stellar enrichment events. We assume that an enrichment progenitor is formed at every time interval . For each progenitor, we randomly sample the delay time between its formation and its enrichment event, based on several delay-time distribution (DTD) functions that cover a wide range of astrophysical sites. For each set of , , and DTD function, we follow the abundances of SLRs for 15 Gyr, and repeat this process thousands of times to derive their probability distributions. For , the distributions depend on the DTD function and we provide tabulated values and analytical expressions to quantify the spread. The relative abundance uncertainty reaches a maximum of 60% for . For , we provide the probability for the SLR abundance to carry the signature of only one enrichment event, which is greater than 50% when . For , a small number of events contributed to the SLR abundance. This case needs to be investigated with a separate statistical method. We find that an isolation time for the birth of the Sun of roughly Myr is consistent with the observed abundances of Fe, Pd, and Hf in the early Solar System, when assuming for these isotopes.
25 pages, 11 figures, 4 tables, submitted to ApJ
References in corpus (14)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- The nucleosynthesis of Al26 and Fe60 in solar metallicity stars extending in mass from 11 to 120 Msun: the hydrostatic and explosive contributions
- Short-lived Nuclei in the Early Solar System: Possible AGB Sources
- Double neutron stars: merger rates revisited
- A water budget dichotomy of rocky protoplanets from Al-heating
- Solar system genealogy revealed by extinct short-lived radionuclides in meteorites
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. VIII. A Comparison to Cosmological Short-duration Gamma-ray Bursts
- Stellar origin of the 182Hf cosmochronometer and the presolar history of solar system matter
- Inheritance of solar short- and long-lived radionuclides from molecular clouds and the unexceptional nature of the solar system
- Isotopic enrichment of forming planetary systems from supernova pollution
- Radiogenic p-isotopes from SNIa, nuclear physics uncertainties and Galactic chemical evolution compared with values in primitive meteorites
- Fe in core-collapse supernovae and prospects for X-ray and -ray detection in supernova remnants
- Triggering Collapse of the Presolar Dense Cloud Core and Injecting Short-Lived Radioisotopes with a Shock Wave. V. Nonisothermal Collapse Regime
- Chemical evolution of 244Pu in the solar vicinity and its implication for the properties of r-process production