论文标题

Protostellar流出:过去的窗口

Protostellar Outflows: a window to the past

论文作者

Rohde, P. F., Walch, S., Seifried, D., Whitworth, A. P., Clarke, S. D.

论文摘要

在低质量恒星形成的早期阶段,情节积聚会引起高速流出子弹的排斥,这带有化石记录,记录了驱动原子的增生历史。我们提供44个SPH模拟$ 1 \,\ Mathrm {M} _ {\ odot} $核,涵盖了广泛的初始条件,然后按照核心遵循五个自由下降的时间。单个质子由水槽颗粒表示,水槽颗粒使用亚网格模型发射情节流出。光学算法用于识别流出中的单个情节子弹。然后使用整体流出和单个子弹的参数来估计流出的年龄和能量学以及触发它的积聚事件。并评估这些估计的可靠程度,如果忽略了观察性的不确定性和选择效应(如倾向)。在估计流出年龄的常用方法中,似乎基于叶的前进的长度和速度的方法在进化的早期阶段是最可靠的,而基于流出腔的宽度和前进速度的方法在后期期间最可靠。我们描述了一种几乎与这些方法一样准确的新方法,并且在整个演变过程中可靠。此外,如果每个叶至少包含两个子弹,我们还可以展示如何从子弹的动力学中准确地重建原恒星的积聚历史。流出所夹带的质量比原始弹出的质量高出约十倍。

During the early phases of low-mass star formation, episodic accretion causes the ejection of high-velocity outflow bullets, which carry a fossil record of the driving protostar's accretion history. We present 44 SPH simulations of $1\,\mathrm{M}_{\odot}$ cores, covering a wide range of initial conditions, and follow the cores for five free-fall times. Individual protostars are represented by sink particles, and the sink particles launch episodic outflows using a subgrid model. The Optics algorithm is used to identify individual episodic bullets within the outflows. The parameters of the overall outflow and the individual bullets are then used to estimate the age and energetics of the outflow, and the accretion events that triggered it; and to evaluate how reliable these estimates are, if observational uncertainties and selection effects (like inclination) are neglected. Of the commonly used methods for estimating outflow ages, it appears that those based on the length and speed of advance of the lobe are the most reliable in the early phases of evolution, and those based on the width of the outflow cavity and the speed of advance are most reliable during the later phases. We describe a new method that is almost as accurate as these methods, and reliable throughout the evolution. In addition we show how the accretion history of the protostar can be accurately reconstructed from the dynamics of the bullets if each lobe contains at least two bullets. The outflows entrain about ten times more mass than originally ejected by the protostar.

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