论文标题

环境和反馈物理对Starforge模拟中恒星初始质量功能的影响

Effects of the environment and feedback physics on the initial mass function of stars in the STARFORGE simulations

论文作者

Guszejnov, Dávid, Grudić, Michael Y., Offner, Stella S. R., Faucher-Giguère, Claude-André, Hopkins, Philip F., Rosen, Anna L.

论文摘要

恒星形成的关键奥秘之一是恒星初始质量函数(IMF)的起源。观察到IMF在银河系及其卫星上几乎是通用的,并且仅在极端环境中推断出明显的变化,例如巨大的椭圆星系岩心。在这项工作中,我们介绍了Starforge项目中的模拟,该模拟是第一个遵循单个恒星并包含所有相关物理过程的RMHD模拟。模拟包括详细的气体热力学以及以原恒星喷射,恒星辐射,风和超新星的形式形式的恒星反馈。在这项工作中,我们关注恒星辐射,风和超新星如何影响恒星形成的云。辐射反馈在淬灭恒星形成和破坏云中起着重要作用,但是IMF峰主要由Protostellar Jet Physics设定。我们发现恒星风的效果很小,超新星发生得太晚,无法影响IMF或Quench恒星形成。我们还研究了初始条件对IMF的影响。 IMF对初始湍流,云质量和云表面密度不敏感,即使这些参数显着影响了云的星形形成历史,包括最终的恒星形成效率。特征性恒星质量弱取决于金属性和星际辐射场。最后,尽管湍流驱动和磁化水平强烈影响恒星形成历史,但它们仅影响IMF的高质量斜率。

One of the key mysteries of star formation is the origin of the stellar initial mass function (IMF). The IMF is observed to be nearly universal in the Milky Way and its satellites, and significant variations are only inferred in extreme environments, such as the cores of massive elliptical galaxies. In this work we present simulations from the STARFORGE project that are the first cloud-scale RMHD simulations that follow individual stars and include all relevant physical processes. The simulations include detailed gas thermodynamics, as well as stellar feedback in the form of protostellar jets, stellar radiation, winds and supernovae. In this work we focus on how stellar radiation, winds and supernovae impact star-forming clouds. Radiative feedback plays a major role in quenching star formation and disrupting the cloud, however the IMF peak is predominantly set by protostellar jet physics. We find the effect of stellar winds is minor, and supernovae occur too late}to affect the IMF or quench star formation. We also investigate the effects of initial conditions on the IMF. The IMF is insensitive to the initial turbulence, cloud mass and cloud surface density, even though these parameters significantly shape the star formation history of the cloud, including the final star formation efficiency. The characteristic stellar mass depends weakly on metallicity and the interstellar radiation field. Finally, while turbulent driving and the level of magnetization strongly influences the star formation history, they only influence the high-mass slope of the IMF.

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