论文标题

核心溢出超新星核合成与陨石星星晶粒之间的比较:研究镁,铝和铬

Comparison between core-collapse supernova nucleosynthesis and meteoric stardust grains: investigating magnesium, aluminium, and chromium

论文作者

Hartogh, Jacqueline den, Petö, Maria K., Lawson, Thomas, Sieverding, Andre, Brinkman, Hannah, Pignatari, Marco, Lugaro, Maria

论文摘要

太阳系实体样品中核合成起源的同位素变化已得到充分的文献记载,但这些变化的起源仍然不确定。 \ iso {54} cr的可变性在原始磁盘的不同区域形成的材料中,已归因于富含昆虫的氧化物(铬铁矿)晶粒的可变数量,这些晶粒存在于陨石星尘库存中,最有可能来自某种类型的超级新闻爆炸物。为了研究这些晶粒起源的核心溢出层(CCSNE)是否可以分析具有初始质量15、20和25 m $ $ _ {\ odot} $的CCSN模型的产量,以及太阳金属性。我们提出了CR,MG和Al同位素的广泛丰度数据集,这是封闭质量的函数。我们发现,爆炸性的C-ashes与观察到的\ iso {54} cr/\ iso {52} cr和\ iso {53} cr/\ iso {52} cr率以及\ iso {50} cr/\ iso {52} cr的情况。考虑到原子质量50处的信号也可以起源于\ iso {50} ti,爆炸性燃烧的骨灰也与观察到的比率相匹配。从He灰分(在Al和Cr相对于MG中富含CR以模拟铬铁矿晶粒的构成)中添加材料到太阳系组成可能会重现Mg和CR异常之间观察到的相关性,而C-Ashes的材料则不呈现出明显的MG异常与CROTOPOPIC变异。在所有情况下,非放射原生成,稳定的MG同位素变异都在\ iso {26} al的预期变化上占主导地位。

Isotope variations of nucleosynthetic origin among Solar System's solid samples are well documented, yet the origin of these variations is still uncertain. The observed variability of \iso{54}Cr among materials formed in different regions of the proto-planetary disk has been attributed to variable amounts of presolar chromium-rich oxide (chromite) grains, which exist within the meteoritic stardust inventory and most likely originated from some type of supernova explosions. To investigate if core-collapse supernovae (CCSNe) could be the site of origin of these grains, we analyse yields of CCSN models of stars with initial mass 15, 20 and 25 M$_{\odot}$, and solar metallicity. We present an extensive abundance data set of the Cr, Mg, and Al isotopes as a function of enclosed mass. We find cases in which the explosive C-ashes produce a composition in good agreement with the observed \iso{54}Cr/\iso{52}Cr and \iso{53}Cr/\iso{52}Cr ratios as well as the \iso{50}Cr/\iso{52}Cr ratios. Taking into account that the signal at atomic mass 50 could also originate from \iso{50}Ti, the ashes of explosive He-burning also match the observed ratios. Addition of material from the He ashes (enriched in Al and Cr relative to Mg to simulate the make-up of chromite grains) to the Solar System composition may reproduce the observed correlation between Mg and Cr anomalies, while material from the C-ashes does not present significant Mg anomalies together with Cr isotopic variations. In all cases, non-radiogenic, stable Mg isotope variations dominate over the variations expected from \iso{26}Al.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源