English

Origin of Anomalous Xe-H in Nanodiamond Stardust

Earth and Planetary Astrophysics 2014-06-04 v1

Abstract

Still today, the nucleosynthesis origin of Xe-H in presolar nanodiamonds is far from understood. Historically, possible explanations were proposed by a secondary "neutron-burst" process occurring in the He- or C/O-shells of a type-II supernova (SN-II), which are, however, not fully convincing in terms of modern nucleosynthesis conditions. Therefore, we have investigated Xe isotopic abundance features that may be diagnostic for different versions of a classical, primary r-process in high-entropy-wind (HEW) ejecta of core-collapse SN-II. We report here on parameter tests for non-standard r-process variants, by varying electron abundances (Ye_e), ranges of entropies (S) and expansion velocities (Vexp_{exp}) with their correlated neutron-freezeout times (τ\tau(freeze)) and temperatures (T9_9(freeze)). From this study, we conclude that a best fit to the measured Xe-H abundance ratios i^iXe/136^{136}Xe can be obtained with the high-S "main" component of a "cold" r-process variant.

Keywords

Cite

@article{arxiv.1406.0725,
  title  = {Origin of Anomalous Xe-H in Nanodiamond Stardust},
  author = {K. -L. Kratz and K. Farouqi and O. Hallmann and B. Pfeiffer and U. Ott},
  journal= {arXiv preprint arXiv:1406.0725},
  year   = {2014}
}

Comments

7 pages, 7 figures, Seventh European Summer School on Experimental Nuclear Astrophysics, Sept. 15-27 2013, Santa Tecla (CT), Sicily, Italy