论文标题

在巨大的Prestellar Core G11.92-0.61 mm2中发现500 AU的固有物

Discovery of a 500 au Protobinary in the Massive Prestellar Core G11.92-0.61 MM2

论文作者

Cyganowski, C. J., Ilee, J. D., Brogan, C. L., Hunter, T. R., Zhang, S., Harries, T. J., Haworth, T. J.

论文摘要

我们提出了高分辨率(<〜160 au)大毫米/亚毫米阵列(ALMA)1.3 mm观察到高质量的Prestellar核心候选G11.92-0.61 mm2,这实际上揭示了该源实际上是一种预测分离为505 au的原始系统。 MM2E和MM2W的二进制组件是紧凑的(Radii <140 au)源,其中部分光学厚的灰尘发射,带有alpha $ _ {0.9 cm-1.3 mm} $ = 2.47-2.94。 1.3毫米的亮度温度,T $ _b $ = 68.4/64.6 k的Mm2e/mm2W,意味着内部加热和最小亮度L $ _*$ _*$> 24.7 lsun for mm2e和l $ _*$ _*$ _*$> 12.6 lsun for mm2w。紧凑的来源通过低表面 - 亮度灰尘发射的“桥”连接,并位于更扩展的发射中,这可能对应于环形磁盘。估计从〜0.2英寸的分辨率VLA 0.9 cm观察值估计的周期性溶质气体质量是6.8 +/- 0.9 msun。在我们的高分辨率1.3 mm ALMA的高分辨率1.3 mm检测中,未检测到对MM2E和MM2W的线排放。我们还报告了围绕原恒星的分子材料。通过低兴奋的CH3OH发射所追踪的流出表明始终的积聚到了固有系统上。总体而言,Mignon-Risse等人的超级巨型模型。 (2021)与观察到的MM2E/MM2W固有物的特性非常吻合,这表明该系统可能在具有弱磁场的环境中形成。

We present high-resolution (< ~160 au) Atacama Large Millimeter/submillimeter Array (ALMA) 1.3 mm observations of the high-mass prestellar core candidate G11.92-0.61 MM2, which reveal that this source is in fact a protobinary system with a projected separation of 505 au. The binary components, MM2E and MM2W, are compact (radii < 140 au) sources within the partially optically thick dust emission with alpha$_{0.9 cm-1.3 mm}$=2.47-2.94. The 1.3 mm brightness temperatures, T$_b$=68.4/64.6 K for MM2E/MM2W, imply internal heating and minimum luminosities L$_*$ > 24.7 Lsun for MM2E and L$_*$ > 12.6 Lsun for MM2W. The compact sources are connected by a "bridge" of lower-surface-brightness dust emission and lie within more extended emission that may correspond to a circumbinary disk. The circumprotostellar gas mass, estimated from ~0.2" resolution VLA 0.9 cm observations assuming optically thin emission, is 6.8+/-0.9 Msun. No line emission is detected towards MM2E and MM2W in our high-resolution 1.3 mm ALMA observations. The only line detected is 13CO J=2-1, in absorption against the 1.3 mm continuum, which likely traces a layer of cooler molecular material surrounding the protostars. We also report the discovery of a highly asymmetric bipolar molecular outflow that appears to be driven by MM2E and/or MM2W in new deep, ~0.5" resolution (1680 au) ALMA 0.82 mm observations. This outflow, traced by low-excitation CH3OH emission, indicates ongoing accretion onto the protobinary system. Overall, the super-Alfvenic models of Mignon-Risse et al. (2021) agree well with the observed properties of the MM2E/MM2W protobinary, suggesting that this system may be forming in an environment with a weak magnetic field.

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