论文标题

$η$汽车中首次检测硅分子

First detection of silicon-bearing molecules in $η$ Car

论文作者

Bordiu, C., Rizzo, J. R., Bufano, F., Quintana-Lacaci, G., Buemi, C., Leto, P., Cavallaro, F., Cerrigone, L., Ingallinera, A., Loru, S., Riggi, S., Trigilio, C., Umana, G., Sciacca, E.

论文摘要

我们提出了Alma带6的观测值,该观测值是在Almagal程序中获得的发光蓝色可变ETA CAR。我们报告了SIO J = 5-4,SIS J = 12-11和SIN N = 5-4在寄生虫星云的赤道区域中的发射,这构成了高度进化的早期,早期大型大型恒星的首次检测。 SIO,SIS和SIN追踪一个块状赤道环,该环在2个Arcsec的预计距离周围围绕中央二进制,描绘了蝴蝶形尘土飞扬区域的内部边缘。含硅化合物的形成大概与由于ETA汽车的可变风状态引起的灰尘的连续回收有关,该粉尘会破坏谷物并将硅释放回气相。我们讨论了观察到的物种的可能形成途径,将它们在当前的ETA汽车的分子清单中进行了背景。我们发现,该环的本地团块中的SIO和SIS分数丰度分别为$ 6.7 \ times10^{ - 9} $和$ 1.2 \ times10^{ - 8} $,非常低于在C-和O-rich Agb星星中测量的AGB恒星和凉爽的Supergiants;而较高的罪过,$ 3.6 \ times10^{ - 8} $,证明了弹出氮的富氮化学反应。这些丰度必须被视为严格的上限,因为H2在Homunculus中的分布尚不清楚。在任何情况下,这些发现都将新的光线散发到ETA汽车的特殊分子生态系统上,并将其周围环境作为新实验室建立,以研究在极端天体物理条件下硅酸盐灰尘的生命周期。

We present ALMA band 6 observations of the luminous blue variable Eta Car, obtained within the ALMAGAL program. We report SiO J=5-4, SiS J=12-11 and SiN N=5-4 emission in the equatorial region of the Homunculus nebula, constituting the first detection of silicon- and sulphur-bearing molecules in the outskirts of a highly evolved, early-type massive star. SiO, SiS and SiN trace a clumpy equatorial ring that surrounds the central binary at a projected distance of 2 arcsec, delineating the inner rims of the butterfly-shaped dusty region. The formation of silicon-bearing compounds is presumably related to the continuous recycling of dust due to the variable wind regime of Eta Car, that destroys grains and releases silicon back to gas phase. We discuss possible formation routes for the observed species, contextualizing them within the current molecular inventory of Eta Car. We find that the SiO and SiS fractional abundances in localised clumps of the ring, $6.7\times10^{-9}$ and $1.2\times10^{-8}$ respectively, are exceptionally lower than those measured in C- and O-rich AGB stars and cool supergiants; while the higher SiN abundance, $3.6\times10^{-8}$, evidences the nitrogen-rich chemistry of the ejecta. These abundances must be regarded as strict upper limits, since the distribution of H2 in the Homunculus is unknown. In any case, these findings shed new light onto the peculiar molecular ecosystem of Eta Car, and establish its surroundings as a new laboratory to investigate the lifecycle of silicate dust in extreme astrophysical conditions.

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