论文标题

从回收恒星风中的类星体的金属天花板

Metallicity Ceiling in Quasars from Recycled Stellar Winds

论文作者

Cheng, Shelley J., Loeb, Abraham

论文摘要

上下文:光学发光的类星体在所有红移中富含金属。令人惊讶的是,具有不同星形形成率(SFR)的宽线区域(BLR)金属性没有明显的趋势,平均N V/ C IV金属性似乎不超过$ 9.5〜Z_ \ odot $。这些观察结果结合在一起,可能表明金属性上限。 目的:在这里,我们对与嵌入式恒星演变有关的方案进行了探索性研究,该方案​​可能导致金属盘的金属天花板。 方法:我们开发了一个简单的模型,该模型从“封闭盒”中的气体开始,该模型由恒星进化的循环丰富,直到最终新形成的恒星可能在到达超新星阶段之前可能会发生巨大的质量损失,并且进一步富集了。使用MESA代码,我们在质量的参数空间($> 8〜M_ \ ODOT $)和金属($ 1-10〜Z_ \ ODOT $)上创建一个网格,并找到参数空间的一部分,在该空间中,通过风在恒星短的时间表上,通过风中发生质量损失。 结果:我们发现,对于关于恒星风的合理假设,足够巨大的($ 8-22〜M_ \ odot $)和富含金属的($ \ sim9〜z_ \ odot $)星星因风而损失了巨大的质量,并且可能不再进化到超级novae阶段,从而无法丰富和增加周围金属的金属性。这表明金属天花板是气体和恒星封闭盒系统的最终状态。

Context: Optically luminous quasars are metal rich across all redshifts. Surprisingly, there is no significant trend in the broad-line region (BLR) metallicity with different star formation rates (SFR) and the average N V/ C IV metallicity does not appear to exceed $9.5~Z_\odot$. Combined, these observations may suggest a metallicity ceiling. Aims: Here, we conduct an exploratory study on scenarios relating to the evolution of embedded stars that may lead to a metallicity ceiling in quasar disks. Methods: We develop a simple model that starts with gas in a ''closed box'', which is enriched by cycles of stellar evolution until eventually newly formed stars may undergo significant mass loss before they reach the supernovae stage and further enrichment is halted. Using the MESA code, we create a grid over a parameter space of masses ($>8~M_\odot$) and metallicities ($1-10~Z_\odot$), and locate portions of the parameter space where mass loss via winds occurs on a timescale shorter than the lifetime of the stars. Results: We find that for reasonable assumptions about stellar winds, sufficiently massive ($8-22~M_\odot$) and metal-rich ($\sim9~Z_\odot$) stars lose significant mass via winds and may no longer evolve to the supernovae stage, thereby failing to enrich and increase the metallicity of their surroundings. This suggests that a metallicity ceiling is the final state of a closed-box system of gas and stars.

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