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Short-lived p-nuclides in the early solar system and implications on the nucleosynthetic role of X-ray binaries

机译:早期太阳系中的短寿命p核素以及X射线双星的核合成作用的含义

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摘要

The data available for short-lived p-nuclides are used in an open nonlinear model of the chemical evolution of the Galaxy in order to discuss the origin of extinct radionuclides, the stellar sources of p-nuclides, and the chronology of solar system formation. It is concluded that the observed abundances of Tc-97, Te-98, Nb-92, and Sm-146 in the early solar system are consistent with nucleosynthesis in type II supernovae during continuous chemical evolution of the Galaxy and a subsequent short isolation of the presolar molecular cloud from fresh nucleosynthetic inputs. However, further work on supernova models is needed before p-radionuclides will comprise reliable cosmochronometers. Despite these limitations, we argue that niobium-92 can be used to test whether the rp-process contributed to the synthesis of light p-nuclides in the Mo-Ru region.
机译:短期存在的p型核素的可用数据用于银河系化学演化的开放式非线性模型中,以便讨论已灭绝的放射性核素的起源,p型核素的恒星源以及太阳系形成的时间顺序。结论是,在早期太阳系中观测到的Tc-97,Te-98,Nb-92和Sm-146的丰度与银河系连续化学演化过程中II型超新星的核合成和随后的短时分离有关。来自新鲜核合成输入的太阳前分子云。然而,在p-放射性核素将组成可靠的天文钟之前,需要对超新星模型做进一步的工作。尽管存在这些局限性,我们认为铌92可用于测试rp过程是否有助于Mo-Ru区中轻质p核素的合成。

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