论文标题
来自低质量幼小原始物体的分子喷射
Molecular jets from low-mass young protostellar objects
论文作者
论文摘要
在低质量恒星形成的早期,分子喷射来自最年轻的原恒星。它们在CO,SIO和(子)毫米波长的最终区域中被检测到,它们相关的Protostar和增生磁盘被深层嵌入,并在其中启动和准确。它们不仅是原恒星增生历史的化石记录,而且还被期望在促进增生过程中发挥重要作用。研究它们的物理特性(例如,质量降低速率,速度,旋转,旋转,摆动,分子含量,冲击形成,周期性变化,磁场等)使我们不仅可以探测射流的发射和准入,还可以探测磁盘的吸收和进化,以及磁盘中的潜在二进制形成以及毛线形成。在这里,我回顾了与在恒星形成后期的光学射流中相比,分子喷射的高空间和高速分辨率分辨率观察结果获得的令人兴奋的结果。预计以高空间和速度分辨率在ALMA的高空间和速度分辨率下的分子喷气机的未来观察预计将导致我们对年轻恒星的射流的理解。
Molecular jets are seen coming from the youngest protostars in the early phase of low-mass star formation. They are detected in CO, SiO, and SO at (sub)millimeter wavelengths down to the innermost regions, where their associated protostars and accretion disks are deeply embedded and where they are launched and collimated. They are not only the fossil records of accretion history of the protostars but also are expected to play an important role in facilitating the accretion process. Studying their physical properties (e.g., mass-loss rate, velocity, rotation, radius, wiggle, molecular content, shock formation, periodical variation, magnetic field, etc) allows us to probe not only the jet launching and collimation, but also the disk accretion and evolution, and potentially binary formation and planetary formation in the disks. Here I review recent exciting results obtained with high-spatial and high-velocity resolution observations of molecular jets in comparison to those obtained in the optical jets in the later phase of star formation. Future observations of molecular jets with a large sample at high spatial and velocity resolution with ALMA are expected to lead to a breakthrough in our understanding of jets from young stars.