论文标题

新发现的年轻喷发星的谷物生长

Grain growth in newly discovered young eruptive stars

论文作者

Kóspál, Á., Ábrahám, P., Carmona, A., Chen, L., Green, J. D., van Boekel, R., White, J. A.

论文摘要

Fu Orionis型恒星是年轻的恒星物体,显示出大量爆发,这是由于从星形磁盘上高度增强的吸积到原恒星上的爆发。从非常嵌入的爆发到几乎没有磁盘以外的迹象的爆发来源,从嵌入式的爆发中发生了多种爆发。随后的喷发可能会逐渐清除遮盖的包膜材料,并在其成为仅磁盘的Tauri恒星的途中驱动原子。我们使用VLT/Visir获得了覆盖8-13 $ $ M中红外波长范围的第一个光谱,该范围是最近发现的五个燃料的低分辨率。我们示例中的四个对象显示了发射中的10美元$ M硅酸盐功能。我们研究这些物体中硅酸盐特征的形状和强度,发现它们主要包含大型无定形晶粒,这表明大谷物通常不会在Fuor磁盘中的中平面固定。这是燃料的一般特征,而不是常规的T tauri-type星,其磁盘显示从原始的小晶粒到明显的谷物生长。我们通过确定硅酸盐特征是发射还是吸收来对我们的目标进行分类,并面对它们在年轻恒星周围的信封的扩散上的进化场景。在我们的样品中,所有II类对象均表现出硅酸盐发射,而对于I类对象,在发射或吸收中的特征的外观取决于相对于流出腔的视角。这突出了解释硅酸盐特征时几何影响的重要性。

FU Orionis-type stars are young stellar objects showing large outbursts due to highly enhanced accretion from the circumstellar disk onto the protostar. FUor-type outbursts happen in a wide variety of sources from the very embedded ones to those with almost no sign of extended emission beyond the disk. The subsequent eruptions might gradually clear up the obscuring envelope material and drive the protostar on its way to become a disk-only T Tauri star. We used VLT/VISIR to obtain the first spectra that cover the 8-13 $μ$m mid-infrared wavelength range in low-resolution of five recently discovered FUors. Four objects from our sample show the 10 $μ$m silicate feature in emission. We study the shape and strength of the silicate feature in these objects and find that they mostly contain large amorphous grains, suggesting that large grains are typically not settled to the midplane in FUor disks. This is a general characteristic of FUors, as opposed to regular T Tauri-type stars whose disks display anything from pristine small grains to significant grain growth. We classify our targets by determining whether the silicate feature is in emission or in absorption, and confront them with the evolutionary scenarios on the dispersal of the envelopes around young stars. In our sample, all Class II objects exhibit silicate emission, while for Class I objects, the appearance of the feature in emission or absorption depends on the viewing angle with respect to the outflow cavity. This highlights the importance of geometric effects when interpreting the silicate feature.

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