论文标题
中微子主导的积聚流对活性银核的化学演化的核合成贡献
Nucleosynthesis Contribution of Neutrino-dominated Accretion Flows to the Chemical Evolution of Active Galactic Nuclei
论文作者
论文摘要
最近对类星体的观察结果显示出较高的排放线的线路频率比率很高,并且该比率似乎独立于高达$ z \ gtrsim 6 $的红移,这表明这些早期类星体的宽线区域令人惊讶地富含金属金属。在这里,我们通过添加一种新成分,即中微子主导的增生流(NDAFS),在传统的核心偏循环超新星(CCSNE)之上,通过添加新成分(即中微子主导的积聚流(NDAFS))来重新审视高红移类星体的化学演变。在存在流出的NDAF的化学贡献的情况下,每个CCSN的总金属质量(即,总CCSN和NDAFS的总和)弱取决于祖细胞星的质量,如果质量在$ \ sim 25-55〜M _ _ {\ odot} $中。我们通过采用具有三个典型初始质量功能(IMF)的改进的开放式盒子模型来对化学演化进行建模。我们发现,随着NDAF的额外化学贡献,流出的额外化学贡献可以在早期的宇宙中更快地富集($ z \ sim 10 $),并且比No-ndaf案例在$ z \ sim 8 $中达到的饱和度更高,此后它们会随着红色而缓慢地进化。类星体的金属性可以达到$ \ sim 20〜z _ {\ odot} $($ z_ \ odot $表示太阳的金属性;和$ \ sim 20 \%$,其产生的ndaf产生的$ z \ sim 8 $是$ z \ sim 8 $,用于``对超极性金属丰度和红移无关演变的类星体观察。
Recent observations of quasars show high line-flux ratios in their broad emission lines and the ratios appear to be independent of redshift up to $z \gtrsim 6$, which indicate that the broad-line regions of these early quasars are surprisingly metal-rich. Here, we revisit the chemical evolution of high-redshift quasars by adding a new ingredient, i.e., the neutrino-dominated accretion flows (NDAFs) with outflows, on top of the conventional core-collapse supernovae (CCSNe). In the presence of the chemical contribution from NDAFs with outflows, the total metal mass (i.e., the summation of the conventional CCSN and NDAFs with outflows) per CCSN depends weakly upon the mass of the progenitor star if the mass is in the range of $\sim 25-55~M_{\odot}$. We model the chemical evolution by adopting a improved open-box model with three typical initial mass functions (IMFs). We find that, with the additional chemical contribution from NDAFs with outflows, the quasar metallicity can be enriched more rapidly in the very early Universe ($z \sim 10$) and reaches higher saturation than the no-NDAF case at $z \sim 8$, after which they evolve slowly with redshift. The quasar metallicity can reach $\sim 20~Z_{\odot}$ ($Z_\odot$ denotes the metallicity of the Sun; and $\sim 20\%$ of which is produced by NDAF outflows) at $z \sim 8$ for the ``top-heavy'' IMF model in \citet{Toyouchi2022}, which readily explains the quasar observations on the super-solar metal abundance and redshift-independent evolution.