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Grain Formation around the AGB Star L2 Puppis Based On ALMA Observations

机译:基于ALMA观察的AGB星L2瞳孔周围的谷物形成

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While models of grain formation in the outflows of carbon-rich stars have been relatively successful, models of outflows from oxygen-rich, asymptotic giant branch stars have been less fortunate. Under current modeling, it is difficult to produce sufficient amounts of silicate grains with high enough opacity to form a dust-driven wind from these stars. To investigate the cause of this difference, this work is a comparison between typical outflow model results and a model using input from Atacama Large Millimeter/submillimeter Array observations of L_(2) Puppis. The temperatures from these observations are much lower than would typically be used in the standard outflow model. In addition, the observed gas densities are much higher than predicted from typical outflow models. Both of these differences make the formation of silicate grains much more favorable than predicted in current outflow models. We then explore the effects of other possible nonideal conditions including the efficiency of cluster growth prior to nucleation, the efficiency of grain growth following nucleation and the variation of grain coupling to stellar radiation during grain growth. Finally, we calculate the potential enhancement in grain production based on possible increased refractory abundances resulting from the vaporization of millimeter-scale and larger particles left over from the presence of a former planetary system.
机译:虽然碳富碳恒星流出的谷物形成模型相对成功,但富氧渐近巨型分支明星的流出模型不太幸运。在目前的建模下,难以产生足够量的硅酸盐颗粒,足够高的不透明度来形成来自这些恒星的灰尘驱动的风。为了调查这种差异的原因,这项工作是典型流出模型结果和使用来自Atacama大毫米/亚峰值阵列阵列观测的典型流出模型结果和模型之间的比较。来自这些观察结果的温度远低于通常在标准流出模型中使用的温度。此外,观察到的气体密度远高于典型的流出模型预测。这两种差异都使硅酸盐颗粒的形成比当前流出模型中的预测更有利。然后,我们探讨其他可能的非膜病症的影响,包括在成核之前的簇生长的效率,谷物生长效率和晶粒生长期间晶粒偶联与恒星辐射的变化。最后,我们基于可能的增加的难熔丰度来计算谷物生产的潜在增强,这是由毫米尺度的蒸发和从前行星系统的存在留下的较大粒子产生的耐火性。

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